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    Technology

    ThinkEnergy

    Every two weeks we’ll speak with game-changing experts to bring you the latest on the fast-changing energy landscape, innovative technologies, eco-conscious efforts, and more. Join Hydro Ottawa’s Trevor Freeman as he demystifies and dives deep into some of the most prominent topics in the energy industry.

    Have feedback? We’d love to hear from you! Send your thoughts to thinkenergy@hydroottawa.com

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    Latest Episodes:
    Summer Rewind: Modernizing the Electricity Grid with the Advanced Distribution Management System Sep 02, 2024
    Show notes

    Summer rewind: If electrification is the future of energy, the grid must become more efficient and more reliable across Canada. Jenna Gillis, Manager of Distribution System Integration at Hydro Ottawa, joins thinkenergy to discuss the process. Listen to episode 136, as she shares how Ottawa's electricity grid is being updated with an Advanced Distribution Management System (ADMS) and what this means for you, your family, and residents throughout the region. Related links ● EV Everywhere Pilot Project: https://hydroottawa.com/en/save-energy/save-energy-homes/ev-everywhere ● Trevor Freeman on LinkedIn: https://www.linkedin.com/in/trevor-freeman-p-eng-cem-leed-ap-8b612114/ ● Hydro Ottawa: https://hydroottawa.com/en To subscribe using Apple Podcasts: https://podcasts.apple.com/us/podcast/thinkenergy/id1465129405 To subscribe using Spotify: https://open.spotify.com/show/7wFz7rdR8Gq3f2WOafjxpl To subscribe on Libsyn: http://thinkenergy.libsyn.com/ -- Subscribe so you don't miss a video: https://www.youtube.com/user/hydroottawalimited Follow along on Instagram: https://www.instagram.com/hydroottawa Stay in the know on Facebook: https://www.facebook.com/HydroOttawa Keep up with the posts on X: https://twitter.com/thinkenergypod Transcript: Trevor Freeman Hey everyone. Well, it's officially summer, and the think energy team is taking a break to recharge over the next two months, but also to plan our content for the fall. So stay tuned for some great episodes in the fall. Not to worry, though, we still have our summer rewind to keep you engaged. This is where we pick out some of the great past episodes that we've done and repost them. So whether you're lucky enough to be sitting on a dock or going on a road trip or if you're just keeping up with your commute through the summer, it's a great time to revisit our past content. You will hear past episodes from my predecessor and the host chair, Dan Sagan, as well as a couple of mine from the past few months, and you're welcome to check out your own favorite past episodes as well. Wherever you get your podcasts. We hope you have an amazing summer, and we'll be back with new content in September, and until then, happy listening. Trevor Freeman 00:07 Hi, welcome to think energy, a podcast that dives into the fast-changing world of energy through conversations with industry leaders, innovators and people on the frontlines of the energy transition. Join me Trevor Freeman, as I explore the traditional, unconventional and even up and coming facets of the energy industry. If you've got thoughts, feedback or ideas for topics that we should cover, we'd love to hear from you. Please reach out to us, I think energy at hydro ottawa.com. Hi, everyone, welcome back. I'm pretty excited about today's topic, because we're going to be tackling something a little bit technical. And that's always fun. And today is going to be the first of what might end up being a few different episodes looking at this term called grid modernization. So today, we're going to do just a high-level overview. And then over the next few months, there'll be a couple of different episodes that will dive deeper into some of the specific aspects of grid modernization. So that term grid modernization can be a little bit daunting, but that's okay. Our goal here is to pull apart these topics to better understand what they are and how they impact all of us, you know, from those of us working in the energy sector, all the way to the end users of our product, if you will, our electricity customers. So let's start by a bit of a primer. And I think it'll be helpful to start by talking about what the grid is. So the electrical power grid has been called the world's largest machine, and the greatest engineering achievement of the 20th century. And for good reason, thinking of it as a machine is a great metaphor, because just like a car, or a sewing machine or a snow blower, there are a lot of parts. And if any one of those parts breaks or isn't working as it's supposed to be, that will impact the overall function of the machine. And the same is true for the grid. And the parts we're talking about here are the holes, the conductors or wires, the transformers, the switches, as well as the many different sensors and meters and communication devices that help the humans in the mix, monitor and control things. The difference though, is that you know, even for a complex machine, like a car, there are hundreds or maybe even a couple 1000 parts. But the electricity grid, even if we just look at let's say hydro Ottawa as territory, there are hundreds of 1000s of parts. And if we scale that up to Ontario's grid, we're talking about millions and millions of individual parts all working together, so that when you turn your lights on at home, electricity that was generated hundreds or 1000s of kilometers away, flows into your device and makes it work. That's pretty impressive. And if any one of those millions of parts breaks, there's an impact somewhere on the grid. If multiple things break, or if there's something really critical that isn't working. That's a major problem. And we've seen these major problems. We've seen large scale outages. And you know, we tend to focus on Ontario's grid on this show, because that's what we call home. But our grid is connected to our neighboring grids, who are connected to their neighbors to form really an interconnected North American grid across Canada and the United States. It really is a modern engineering marvel. And, you know, we didn't just get here by chance. This was kind of designed, you know, back at the early days of the 20th century in the early 1900s. Electrical pioneers met for the first time in what is now Kitchener, Ontario to discuss what it would look like to wire Ontario's customers together to form a provincial electricity grid. Our predecessor company, the Ottawa hydroelectric commission, connected to that provincial grid in 1916. So, what we know as the Ottawa grid and our service territory is over 100 years old today. Before that, across Ontario, reliable and continuous power in the region was kind of uncommon, and really dependent on whether someone in the area like a major business or a wealthy individual had invested in a localized electricity grid for their own needs. An interconnected provincial grid was designed and implemented with a goal of making electricity available to all Ontarians regardless of where they lived. And that kind of evolution of the grid in Ontario is similar to how it worked in other parts of North America and indeed the world. That's kind of how grids came about in the last century. Ontario's electricity grid, however, like all grids around the world, was really designed as a one-way street. So, the idea was to generate and then transmit, and then deliver that electricity to customers in that order. Back then, those pioneers really couldn't have imagined an electricity grid that would need to support two-way interactive things like small scale distributed renewable energy, you know, solar panels on roofs or electric vehicles, or energy storage, and a whole host of other things that, you know, want to do more than just draw power from the grid. As we've talked about the ongoing energy transition, and electrification, which is being driven by the pressures of climate change, is really driving a societal shift to bring the electricity system into the 21st century, and to make sure it's powered with clean, renewable electricity. So, our grid is starting to undergo this major transformation. And we won't be able to do that effectively or affordably by just using the same strategies and technologies and the same pace that we've been doing it at over the last 100 plus years. We need to take it to the next level; we need to rethink what we're doing to upgrade the grid and how we're doing it. And that's really what grid modernization is, it's not saying we don't have a modern grid, it's realizing that the grid of 10 years from now needs to be different in a much bigger way than it's different from how it was 10 years ago, that pace of change needs to happen quicker. And we need to bring on new functionality. It's not just you know, incremental change anymore. To help us make some sense of this. I'm really happy to have Jenna Gillis to chat with today. Jenna is the manager of distribution system integration at hydro Ottawa and is leading this major project that we're calling at a high-level grid modernization, or more specifically, our advanced distribution management system, or ADMS. Jenna has been with hydro Ottawa for 16 years and has held a number of different roles on the operations and systems side of our business and really knows how our grid operates, how it's been operating, how the humans in the mix control things. And what's necessary to get us to that next stage that we've been talking about. Jenna, welcome to the show. Jenna Gillis 07:04 Great. Thanks, Trevor. excited to talk to about this today. Trevor Freeman 07:07 Yeah, I'm excited to. So let's start at kind of a high level here and help our listeners understand how we currently operate our grid today. So paint the picture for those of us who don't kind of get to see what happens behind the scenes. How do we control things today? Jenna Gillis 07:23 Yeah, for sure. So what people might not realize that we actually have people sitting in a control room centralized control room that looks at our system 24/7 365. So we've got people monitoring the system all the time. And they look at the grid state, and they help direct field activities. They look at triaging outages as they become aware of them. And right now, we've got visibility to our control room to all of our substations, so all of our, you know, high level devices, but only down to about 8% of the feeders and not actually all the way out to our customer level. So what does that mean? That means that we still rely on customers calling us or reporting online when they experience an outage. And all of that information does make its way back into our control room operators. And it goes into a system we call the outage management system, which helps us track and identify where we might be seeing issues out on the grid. So the operators then use that information to help make decisions in terms of controlling the grid where they need to open up closed devices where they need to send field crews to restore power. So on top of that, most of these activities are done by field crews. So the system operators are in direct contact with our crews out in the field and providing direction on where to go, what devices to you know, have them physically open or close in the field. And we've got about 10% of our system right now that has remote capabilities. So that means that the operators can choose to open or close those devices, basically at a click of a button back in the office sitting at a computer. So most of what we do today really is human based and does take an expert control operator to be monitoring the systems and making the decisions. Trevor Freeman 09:08 Yeah, so we've got this like really complex system. It's, you know, state of the art system, if you will, that requires, like you say experts to keep track of what's happening to identify problems and make decisions based on the information they're getting. I just want to pick apart a few things you said there. So when we're talking about our substations, just for our listeners, those are, you know, spots in our grid where we take higher voltage and step it down via transformers to a lower voltage, and then send that out on wires. That's what we call our feeders to our end customers. We know what's happening at that substation level, we can see whether the power is flowing or not whether switches are open or not. But once it gets past that we lose some of that visibility. That's kind of what I'm hearing from you Jenna Gillis 09:57 Yeah, exactly. And so that's why I'm saying like we still rely on those notifications from our customers to let us know where they're seeing the problems. And, you know, it comes into a system that, that we can look at in conjunction with that visibility that we have on the substations to help us understand what's going on. Trevor Freeman 10:12 Right. So obviously, it was such a, you know, an ordered and complex system, we're constantly in proving and renewing and upgrading. That's not new. That's not something that we're just starting. But as I've kind of hinted at in the opening there, we do need to change how we do things. So before we look into where we're going, how do we renew and upgrade today, what's our current process. Jenna Gillis 10:36 So we do have a robust asset management framework. So that's basically a program that tells us and we look at all of our asset information. And that's whether that's poles, wires, transformers, switches, breakers, basically anything we have out on the distribution system, and we look at and prioritize where we need to invest and where we need to renew, replace, install, upgrade, all of that kind of stuff. So basically, as we do that, right now, we go through, and we'll incorporate new technologies, like these remote control switches, like these sensors to bring information back into the control room to help us continue to evolve, meet our customer or system needs. So this, this process has worked really well in the past in terms of keeping pace with technology and the requirements of the grid and our customers. But right now, we're seeing that it's we're falling behind, it's too slow to parallel installation of these new technological devices, with these asset renewals or installation. So I mean, if you think about it, you know, a pull out with wires on it can last over 50 years, we can't wait until we're replacing that 50 years from now to go in and add these new technological advancements. So what that means is now we're looking at a hybrid ap proach. So of course, we're going to continue to parallel activities where it makes sense with these asset renewals and upgrades and replacements. But we also need to strategically start placing these devices in areas that we're going to gain benefit from, and I'm talking about benefit from a control room operator perspective, benefit from a safety or field crew perspective, but also where we can provide value to our customers in terms of, you know, expediting restoration efforts, or, you know, providing more flexibility into the system to allow more customer connections, whether that be, you know, new residential developments, or whether that's, you know, the next solar panel or battery or something like that. Trevor Freeman 12:25 Yeah, waiting for anybody who's familiar with kind of technological adoption curves and the pace of technological change, you talk about 50 years is the life of some of this equipment, the difference between technology and let's say, 1930, and 1980, wasn't a huge jump when it comes to poles and wires and transformers. But today, the difference of 50 years is night and day that we're not talking at all about the same technology. So we can't wait for that whole cycle to go through before we're getting some of the tech in today that we need today in order to upgrade the system. So that's helpful to understand what that looks like. So let's look forward then. And when we talk about where we want to go with grid modernizati…

    Full show notes at the publisher

    Summer Rewind: Vision Quest: Modernizing Ontario's Energy Future with the EDA Aug 19, 2024
    Show notes

    Summer rewind: Ontario's electricity sector is evolving, as the province navigates the transition to cleaner energy amidst rising demand. In thinkenergy episode 135, we explore the grid's structure and key players, highlighting the crucial role of distributors (Local Distribution Companies or LDCs) in facilitating this transition. Guest Teresa Sarkesian, President and CEO of the Electricity Distributors Association (EDA), sheds light on LDCs' frontline efforts and contributions shaping the energy landscape. Related links Teresa Sarkesian on LinkedIn: https://www.linkedin.com/in/teresa-sarkesian-53898613/ Electricity Distributors Association: https://www.eda-on.ca/ Green Button information: https://www.oeb.ca/consumer-information-and-protection/green-button Electrification and energy transition panel report: https://www.ontario.ca/document/ontarios-clean-energy-opportunity-report-electrification-and-energy-transition-panel Ontario Electricity Support Program: https://ontarioelectricitysupport.ca/ Trevor Freeman on LinkedIn: https://www.linkedin.com/in/trevor-freeman-p-eng-cem-leed-ap-8b612114/ Hydro Ottawa: https://hydroottawa.com/en To subscribe using Apple Podcasts: https://podcasts.apple.com/us/podcast/thinkenergy/id1465129405 To subscribe using Spotify: https://open.spotify.com/show/7wFz7rdR8Gq3f2WOafjxpl To subscribe on Libsyn: http://thinkenergy.libsyn.com/ --- Subscribe so you don't miss a video: https://www.youtube.com/user/hydroottawalimited Follow along on Instagram: https://www.instagram.com/hydroottawa Stay in the know on Facebook: https://www.facebook.com/HydroOttawa Keep up with the posts on X: https://twitter.com/thinkenergypod Trevor Freeman Hey everyone. Well, it's officially summer, and the think energy team is taking a break to recharge over the next two months, but also to plan our content for the fall. So stay tuned for some great episodes in the fall. Not to worry, though, we still have our summer rewind to keep you engaged. This is where we pick out some of the great past episodes that we've done and repost them. So whether you're lucky enough to be sitting on a dock or going on a road trip or if you're just keeping up with your commute through the summer, it's a great time to revisit our past content. You will hear past episodes from my predecessor and the host chair, Dan Sagan, as well as a couple of mine from the past few months, and you're welcome to check out your own favorite past episodes as well. Wherever you get your podcasts. We hope you have an amazing summer, and we'll be back with new content in September, and until then, happy listening. Trevor Freeman 0:07 Hi, welcome to think energy, a podcast that dives into the fast-changing world of energy through conversations with industry leaders, innovators and people on the frontlines of the energy transition. Join me Trevor Freeman, as I explore the traditional, unconventional and even up and coming facets of the energy industry. If you've got thoughts, feedback or ideas for topics that we should cover, we'd love to hear from you. Please reach out to us, at think energy at hydro ottawa.com Hi, everyone, welcome back. Now it's no secret that Ontario's electricity sector is transforming rapidly as it moves to both decarbonize the grid itself, you know, we have a very clean grid in Ontario, but it's not totally carbon free. And to support the growing demand for electricity as our customers across the province, take steps to electrify and change how they use energy. The show is all about exploring those changes, among other things, and today is no different. But before we dive into our conversation today, I think it would be helpful for me to spend just a few quick minutes on some basics about how our electricity grid is structured in Ontario, and who some of the key players are. Now I know some of our listeners will know this already, but it can be hard to keep track of all those key players. And Ontario's structure is a little different than some of the neighboring jurisdictions no two jurisdictions are exactly alike. So, a refresher is never a bad thing. Now the most basic description is that electricity is largely generated at central generation facilities. So, think nuclear power plants are your electric generating stations, some gas fired generating stations and large-scale wind and solar installations. We call these entities generators simple as that. That electricity is then transmitted across the province in an interconnected grid of high voltage transmission lines, which also connect to other jurisdictions such as neighboring provinces and states, and Ontario, Hydro One runs the transmission network. Now you've probably seen this transmission network. These would be the large metal towers that you see out in the middle of a field when you're driving along the highway or in rural areas that have electricity wires strung way up high in the air. The last stage before it gets to the end user is called distribution. So, this is where electricity is taken from those high voltage lines stepped down to a usable voltage for residential and commercial customers via transformers and substations, and then distributed over a network of overhead and underground wires, then these would be the wires that you would see at the top of those wooden or composite poles that are along the side of the road in your neighborhood. The entities that run this distribution part are called distributors, again, simple as that. So, there's a few other key players that are worth mentioning here. Energy Policy is primarily the jurisdiction of the provincial government, who sets the general direction and associated rules and regulations accordingly. The Ontario Energy Board or OEB is the regulatory body who governs what all those other players do and enacts the government mandate. And finally, at least for today's purposes, we have the system operator. It's called The Independent Electricity System Operator in Ontario, or IESO, who runs the system. So, if you're in Windsor, Ontario, or Ottawa, or North Bay, and you want to turn on your air conditioner, or plug your EV in to charge, the IESO is responsible for making sure there's enough power on the grid to handle that load. So, I hope everyone is still with me and feel free to pause and do some jumping jacks if that was a lot to take in. Our conversation today is going to be focused on the role of the distributor. So, for full disclosure, as you know, I work for hydro Ottawa who is one of those distributors, we serve most electricity customers in the City of Ottawa, and the neighboring village of Casselman and in Ontario, you will often hear distributors referred to as local distribution companies or LDCs. So forgive me if I slip into that acronym throughout the conversation today, that's really just the sort of common name that we refer to those distributors as. But I'll try to mix it up and make sure that, that I'm explaining that acronym throughout as well. So the distributor is really the front line, the customer facing entity of the entire electricity system. If you are an electricity customer, and you think about the electricity system, you are probably thinking about your distributor. Chances are you get your bill from a distributor, even though for most customers, most of what you pay on that bill doesn't actually go to the LDC. Some of it stays with your local distribution company, but most of it goes to the transmitter to the generator, to the IESO etc. When the power goes out, it's probably your LDC that you call and it's your LDC that will give you a restoration time. Sometimes outages are caused by issues up the line, so to speak in the transmission portion of the grid. But often the issue is a localized one. And it's your LDC that is identifying the problem and fixing it, whether that means rolling a truck to string new cable, or performing switching to work around the problem. And finally, it's your LDC that is really on the frontlines of the energy transition. While all parts of the grid must then have started to change, the LDCs are really working hand in hand with our customers to identify where and how fast and new demand is needed to bridge that gap between customers and policymakers to enable more and more renewable generation. And also to determine what new technologies or programs we need to pilot and scale up. And it's really the LDCs that are driving change in the way that electricity is managed at the individual customer level moving forward. So to help us make some sense of this, I'm happy to have Teresa Sarkesian on the show today. Teresa is the president and CEO of the electricity Distributors Association, which is a role that she's held since 2016. This is actually Teresa second time on the show the first being back in December 2021. So we're happy to have Teresa back, Teresa, welcome back to the show. Teresa Sarkesian 6:23 Thanks so much, Trevor. I'm really delighted to be back. Trevor Freeman 6:27 Yeah, we're glad to have you. So, like I said, you were back on our show in 2021. I don't know if it's because of how COVID has changed our lives or if this is just the way things go. But sometimes, you know, weeks seem like years. So 2021 is a long time ago. Let's start by refreshing our listeners on the role and mandate of the electricity Distributors Association. Teresa Sarkesian 6:49 Sure thing so the electricity Distributors Association, or the EDA our little acronym represents Ontario's public and private electric utilities that distribute electricity to 5.4 million homes, businesses and institutional customers across the province. And I should note that those 5.4 million customers really refers to build accounts so you have families that are behind a build account. So effectively the millions and millions of Ontarians and businesses that operate and live here are customers of our utilities. And as you know our members are on the front lines of power, and have developed a strong trust with their customers by providing safe, reliable and affordable service for over 100 years. The EDA itself provides analysis and networking and advocacy for our members to ensure that the energy policy direction and framework in Ontario is fair and balanced, supporting the financial viability of utilities to deliver service and ensuring affordability for customers. And long term, we are looking to ensure that our local distribution company members can become the premier energy solution providers to their customers, and that they're able to provide the value-added services that customers are already expecting from them but are going to grow with the energy transformation and electrification in the future. Trevor Freeman 8:09 Yeah, it's kind of like I said, when people think about the electricity sector, they're probably thinking about their distributor. And the EDA is kind of that common voice for those distribution companies. So, you first joined the EDA back in 2009, and have been the president and CEO since 2016. So, we'll look ahead and talk about the future in a minute. But before we do that, tell us about how things have changed so far during your tenure. How are things different from 2009 When you first joined the organization? Teresa Sarkesian 8:40 Yeah, and you know, this is almost like perfect timing, Trevor, because I've been at the association now for 15 years, I'm just marking my 15-year anniversary. So, feels really apropos to kind of reflect and look back. So, I want to break down my answer into two parts. So, I'm going to talk to you about some, I guess, just my own personal observations about the electricity system at large. And then I'm going to talk more about the changes in distribution. But some of the changes that I thought were really quite significant and profound, sort of when I joined the industry in 2009, I joined at a time when there was the Green Energy Act, and the province was looking to connect all kinds of renewable energy generation to the electricity grid. So that was fairly significant. Another thing that was happening with the province is that they closed down coal fired generation. That was pretty massive. In fact, I think, at the time, it was the largest kind of carbon reduction initiative in North America. And I think even to this date today, I think it still is something that Ontario really has to be proud of. Another thing that you know, at the time, I think that was you know, fairly significant in 2015 is just the expectation of what the demand would be. What was interesting, sort of like the past for 15 years, the demand from customers for electricity was actually flat or declining. And that's all changed. Now. 15 years later, we're, we're now forecasting, massive increases in in demand of energy, which could potentially be doubling in the future. And the other point I'd like to make is just the nuclear renaissance that we're having. I think when I joined the sector in 2009, I'll tell you, I think the public opinion of nuclear was actually quite low. And that's been completely turned around lots of geopolitical events around the world, I think, have driven that. And now that nuclear is having a huge Renaissance. And you're seeing, you know, lots of new investments in nuclear. And we're not talking about shutting down reactors anymore. We're talking about refurbishing and expanding. So those are some of the things that I've observed over the last 15 years that have really changed. And for local distribution companies, I think what I have seen is a growing expectation by both government and the regulators for electric utilities to do more to both support the grid reliability and meet growing expectation from customers. So, I started in the sector in 2009, it was right on the brink of implementation of smart meters, and time of use. And what was interesting is that was mandated, there were very few jurisdictions in the world that actually had mandated smart meters and time of use pricing. So again, Ontario is was one of the first. And so that was a big change for LDCs. To move from, you know, smart meters and having to bring in that technology and also support the technology of time of use. I did mention the Green Energy Act at the time, we suddenly had to connect 1000s and 1000s, of new solar and wind generation, as well. And that was all new. There were no protocols, there were no standards for that. So that was fairly significant as well. And when I kind of fast forward to I guess, more recently, there have been a lot of changes from government, I think they've really supported our industry, they understand the trust that we have, with our customers. And they've implemented, you know, a number of new changes in terms of rate structures, they've asked us to implement ultra low-rate pricing that can support overnight electric vehicle charging. And they've also asked us to introduce a green button digital platform that allows customers to download their energy data and share with third parties for you know, different assessments and tools for lowering energy costs. But it's all not, you know, unicorns and kittens, there's challenges to for our sector, grid resilience was, you know, not really, people talked about it in 2009, but not like they're talking about it now, because of climate change. And we are seeing more frequent storms, causing, you know, obviously, outages for the customer, and also significant damage to the distribution grid. And I know that hydro Ottawa has faced more than its fair share of very destructive storms over the past few years, we have Yes, I can't remember which Victoria Day…

    Full show notes at the publisher

    Summer Rewind: Accelerating Canada's clean energy transition with Dunsky Energy + Climate Advisors Aug 05, 2024
    Show notes

    HYDRO_ThinkEnergy_Aug5_Audio Wed, Jul 31, 2024 1:07PM • 30:42 SUMMARY KEYWORDS energy, canada, side, country, council, utility, ultimately, philip, big, clean energy, single, transition, challenge, governments, perspective, climate, decarbonize, involved, work, electricity SPEAKERS Trevor Freeman, Dan Seguin, Philippe Dunsky Trevor Freeman 00:00 Everyone, well, it's officially summer and the think energy team is taking a break to recharge over the next two months, but also to plan our content for the fall. So stay tuned for some great episodes in the fall. Not to worry though, we still have our summer rewind to keep you engaged. This is where we pick out some of the great past episodes that we've done and repost them. So whether you're lucky enough to be sitting on a dock or going on a road trip, or if you're just keeping up with your commute through the summer, it's a great time to revisit our past content. You will hear past episodes from my predecessor and the host chair Dan Seguin as well as a couple of mine from the past few months. And you're welcome to check out your own favorite past episodes as well. Wherever you get your podcasts. We hope you have an amazing summer and we'll be back with new content in September. And until then, happy listening. Dan Seguin 00:06 This is think energy, the podcast that helps you better understand the fast changing world of energy through conversations with game changers, industry leaders, and influencers. So join me, Dan Seguin, as I explore both traditional and unconventional facets of the energy industry. Hey, everyone, welcome back. Right now, there are scientists, entrepreneurs, policymakers, indigenous and industry leaders, helping to shape the direction that Canada will take to accelerate a transition to clean energy. Everywhere you look, whether it's academia, municipal, provincial, or federal governments, there's another council or committee being formed to address the most pressing issues of our time, climate change, from transitioning to sustainable energy sources, electrifying transportation, and improving energy efficiency to protecting our natural environment and reducing carbon emissions. One thing is for certain our country is embracing the renewable revolution, like never before. But those with seats at the decision table know that it must be done responsibly, and affordable. As we know, every region of Canada is unique and presents its own set of challenges and opportunities when it comes to tackling climate change, and ways to implement clean energy. So here is today's big question. How did we get such a vast and diverse country like Canada to agree on a pathway forward to a cleaner, greener and more sustainable energy future? Joining us today is Philippe Dunsky of Dunsky Energy and Climate Advisors, a consultancy firm that Philippe founded. It supports government, utilities, corporations across North America to accelerate their transition to clean energy. Phillippe, is the co chair of Canada's new Canada electricity Advisory Council, the co chair of efficiency Canada, and the director of the greater Montreal Climate Fund. He also previously chaired the Quebec government electrification Working Group. Welcome to the show, Philippe. Let's start by asking you this. Having just gone over some of your accomplishments, where does this passion for clean energy and climate come from? Where did it start? Philippe Dunsky 02:44 So, so great to be here. By the way, thank you so much for having me. It started, I guess, I guess very early on. I'm Jewish background and grew up with, you know, endless stories about the Holocaust. And somehow that kind of morphed into just a general interest for world affairs and for big challenges, big societal challenges. And then as I was growing up, those became really focused on environmental issues. So that was the genesis. I became very, very interested in environmental issues. And then through that, and climate change in particular, as probably the greatest challenge of my generation, and for my generation. And then, I guess the other thing is, I've come to discover that I'm a pretty analytical guy. So I'm not a no great protester, I'm not a great to great movement leader, I tend to see a lot of gray, not so much black and white. And so that's how I ended up deciding to get involved in these issues. But, you know, in my own way through more of an analytical lens, Dan Seguin 03:55 Okay, you've served and are serving on numerous councils, committees and boards. Can you tell us what has been the biggest takeaway you've learned through each collaboration? And how has it changed you? Philippe Dunsky 04:11 Yeah, because each one does change you and changes your perspectives. Because ultimately, the biggest takeaway is that no matter how much I think I know this stuff and know this stuff. Well, and I've been working on energy issues for over 30 years now. And so, you know, I always end up thinking that I know the answer. What we discover is that, you know, there's not a single answer, there are many perspectives. And if you can combine knowledge with multiple perspectives, then you can come up with something that's hopefully going to be closer to that, you know, to that truth, or whatever you want to call it. My big learning is that every time you go into something like this, you go in with an open mind and an open heart. And if you do that, and you're listening to others perspectives, then you're bound to land on something that's a hell of a lot smarter. And then what you initially thought coming into it? Dan Seguin 05:02 Okay, cool. Now, you were appointed chair for a recently formed Canada electricity Advisory Council. Can you tell our listeners who's on it? What is the mandate? And just how big of an undertaking is this? Philippe Dunsky 05:19 Sure, I can start with the last question, by the way, that the undertaking, it's a really big issue, it's a really big challenge. On the other hand, the undertaking itself is time limited, it's a 12 month thing. So I'm a pumpkin and I turned into a pumpkin in May. It's been five months now. So I got another seven to go. From that perspective, that's the timing that we're looking at. Okay, Council itself is a group of 18 Canadians from across the country, every single, every single province, no exception. It's, it's extraordinary mix of individuals with an extraordinary mix of experience and perspective. So I'd say roughly half of council members are either current or former utility executives. The other half is a bit more of an eclectic mix of former regulators, we have people involved in the power production side of things, we have first nations leaders, so indigenous leaders, and a couple of others with different perspectives to bring to the table. But the really important thing here, I think, is that you're looking at the leadership level from every single province across the country. And that makes for really, really enlightening and challenging conversations as well. And then I guess you asked about the purpose or the mandate of the council. So I'll put it at a very, very fundamental level as a country, we're trying to largely decarbonize electricity by sometime in the middle of the 2030s. And we're looking to grow electricity, very substantially to decarbonize the rest of the economy. By 2050. That's that dual set of goals is at the heart of our mandate. And our mandate is to figure out what the feds can and must do. And at the same time, what can and must be done by others in the country, to help make this an easier journey, a more affordable journey. And ultimately, a more successful journey on the way there. Dan Seguin 07:22 Okay, great segue here. Now, with respect to Canada's goal to achieve a 100%, Net Zero electricity system by 2035, you stated, "Is it better to optimize than maximize? Can you maybe break that down for us? And can you give us some examples? Philippe Dunsky 07:41 Yeah, sure. I mean, you know, what I mean by that is, if all we do is say we want to decarbonize, there are many, many paths to do that. And, you know, we can say, hey, we're gonna, we're just gonna build, build, build, build, build until there's no tomorrow. And we could probably get there, doing nothing but that, but we'll get there in a less affordable way, than if we really think through the intricacies of what needs to be done. Yes, on adding, also on subtracting, so actually becoming more efficient in the way we use energy, relying more on consumers' involvement in the marketplace to achieve some of those goals. I just think there are quick ways to get to the goal, that ultimately, are going to cost too much and or create reliability issues. And if that happens, there'll be a backlash. And we'll never get to the goal. Alternatively, there, they're thoughtful ways that maybe aren't exactly the way we've always done things in the past, but that involve a lot more complexity and being able to wrestle with complexity and stuff. But ways that are focused on keeping this as affordable as possible, ultimately, for everyone across Canada, making sure that we do this in a way that's reliable, so we can always count on electricity being there. And in doing it in a way that actually involves some cooperation, as well. Dan Seguin 09:04 So the electricity Council fulfills the minister's mandate to establish a pan Canadian grid Council. How viable is a pan Canadian electricity grid? Or are you seeing your movement in regional interconnections? Philippe Dunsky 09:22 Yeah, so it definitely looks regional. Let me be really clear about that. And I know the original Originally, the name for the council was supposed to be the pan Canadian grid Council, as you pointed out, you'll also notice it, it was not it does not have that name. And there's a reason for that. And, and I will say, you know, and I've said this publicly many times, I don't believe that that's the right answer. We definitely need a lot more cooperation. at the regional level. There are a lot of opportunities for provinces to exchange more to continue exchanging with the US by the way, and this isn't, you know, we're not caught within, within our borders. So we have to do more on the cooperation side to keep costs down again, as low as possible to make this as smart and thoughtful and as achievable as possible. But that doesn't involve, you know, I love the old Coast to Coast Railway analogy. It's nice, it's working for railways. We're not talking about a single grid that goes coast to coast that's just not in the cards. Dan Seguin 10:28 Now, for those who are not aware, can you tell us about your firm, its purpose, and what makes your approach unique, and particularly effective? Philippe Dunsky 10:40 Sure, I mean, I'm thrilled talking about my firm. So these days, I spend so much time talking about look Council, which is kind of like my evenings and nighttime job, or evenings and weekend job. But my day job is running my firm, my firm is a group of over 50 professionals. Now, I think we're about 55 now that are dedicated exclusively to supporting clients in their clean energy transitions. And our clients typically are utilities and governments, increasingly large corporate clients as well, across Canada and across the US. So ultimately we work with utilities and governments that are in the throes of this energy transition, that are trying to figure it out. They're trying to find a way to help their customers navigate through it and a way for themselves to navigate through it, to define what the business case is for them and what their proper role is in it. And, and then we also have helped them in some of the nitty gritty. So, you know do you get customers involved on the demand side management side to reduce the pressure on right on the big build out? And all the capital is involved there? You know, what do we need to do to electrify vehicles, for example. So we've developed for some places, charging, charging infrastructure plans and charging infrastructure, business, business plans, strategies, investment plans, we work with, with our, with our customers in helping helping to decarbonize buildings through whether it's direct electrification, or hybrid heating systems without just the natural gas, depending on the on the need, we work with to decarbonize industrial loads, as well. And oftentimes, we're working with our utility customers to help them help their industrial customers decarbonize. So all of those things, and more and of course, planning out the whole transformation of the electricity system on the supply side, is a big part of it. That's a lot of what we do. It's hard to put in a single sentence. But the interesting thing, I guess, for us is, you know, ultimately, we're a consulting shop that is exclusively focused on the clean energy transition, we do nothing other than that. And, and I think that makes us pretty darn good at it. Dan Seguin 13:02 That's perfect. Phillippe, your company emphasizes support in four focus areas, buildings, mobility, Industry and Energy. How were those identified? And can you maybe provide some specific projects or initiatives that have made a significant difference in the sector's? Philippe Dunsky 13:25 Yeah, sure. And those sectors are, you know, 80 to 90%, of the energy equation, right. So they've grown over time, in a very deliberate manner, we started out working on the building side of the equation. So you know, what we call DSM or in Ontario, you call it CDM. Just to be different. But so we started out working on that. And then over time, we added mobility, especially electric mobility to our portfolio of expertise, and then built out from there, including on the generation and TND side, in terms of some examples. I mean, I'll be honest with you, we do well over 100 projects a year now. So there are a lot of different ones with a pretty large variety. But for example, I actually just came back from meeting with one of our clients, a large, large electric utility, where we've helped them to revamp their whole CDM approach. So that's, you know, from top to bottom, on the strategy side, on the regulatory side, and then on what the programs actually look like and how they operate and who they involve. In Ontario, we actually completed something I think is absolutely fascinating. I really enjoyed reading it. And that was a study of the potential of Drs. So distributed energy resources in Ontario to essentially keep the lights on, you know, we found 1000s of megawatts of exploitable resources there that you don't need to build because they're already there on the customer side of the meter. So stuff like that. We've worked with a lot of states in the US including California and New York designing, designing measure is to help their customers finance, the transition on their side, we've done a lot of work with, with utility executives helping them think through the strategy side of this, how am I going to actually the change management? How may I change my own utility to go from what it was in that steady state environment of the past 75 years to something that is a completely different beast in a very much more dynamic world. And it's focused on customer service and, and focused on transitioning the energy system as a whole. So, again, a pretty broad array of, of projects, but all of them. Absolutely. Absolutely exciting. And, and fascinating for me to be involved in and learn from. Dan Seguin 15:45 Okay, now, wondering if you can speak to the importance…

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    Summer Rewind: Climate Communication: Motivating Change with Re.Climate Jul 22, 2024
    Show notes

    Summer rewind: What role do communicators play in motivating change? Specifically, how can they move their audiences to take action against climate change? In thinkenergy episode 122, we delve into the world of climate communication with Amber Bennett, Deputy Director of Re.Climate. Explore the driving forces, opportunities, and challenges of inspiring climate action—from bridging research to practise to empowering change. Listen in for an insightful conversation on shaping a sustainable future. Related links Amber Bennet on LinkedIn: https://www.linkedin.com/in/abennettyyc/ Re.Climate: https://reclimate.ca/ Intergovernmental Panel on Climate Change: https://www.ipcc.ch/ Trevor Freeman on LinkedIn: https://www.linkedin.com/in/trevor-freeman-8b612114/ To subscribe using Apple Podcasts: https://podcasts.apple.com/us/podcast/thinkenergy/id1465129405 To subscribe using Spotify: https://open.spotify.com/show/7wFz7rdR8Gq3f2WOafjxpl To subscribe on Libsyn: http://thinkenergy.libsyn.com/ --- Subscribe so you don't miss a video: https://www.youtube.com/user/hydroottawalimited Check out our cool pics on https://www.instagram.com/hydroottawa More to Learn on https://www.facebook.com/HydroOttawa Keep up with the Tweets at https://twitter.com/thinkenergypod Transcript Trevor Freemon Everyone, well, it's officially summer. And it's been about four months since I took over the mic as the host of the think energy podcast, which is kind of hard to believe. It's been really fun having great conversations with great people in the energy sector. I now mostly know my way around the recording equipments and the software, and really feel like we're kind of just getting started and looking forward to where we go from here. That said, the think energy team is taking a break to recharge over the next few months, but also to plan our content for the fall. So stay tuned for some great episodes in the fall. Not to worry though, we still have our summer rewind to keep you engaged. This is where we pick out some of the great past episodes that we've done and repost them. So whether you're lucky enough to be sitting on a dock or going on a road trip, or if you're just keeping up with your commute through the summer, it's a great time to revisit our past content. You will hear past episodes from my predecessor and the host chair Dan second, as well as a couple of mine from the past few months. And you're welcome to check out your own favorite past episodes as well, wherever you get your podcasts. We hope you have an amazing summer and we'll be back with new content in September. And until then, happy listening. Dan Seguin 00:06 This is ThinkEnergy, the podcast that helps you better understand the fast changing world of energy through conversations with game changers, industry leaders, and influencers. So join me, Dan Seguin, as I explore both traditional and unconventional facets of the energy industry. Hey, everyone, welcome back. Did you scroll through the news this morning? How many of those articles that you skim covered a topic related to climate change? I guess it was probably a few. It seems. Every couple of weeks there's a new story dominating the headlines about forest fires, hurricanes, floods, heatwaves, and more, both here in Canada and abroad. We are seeing firsthand the effects of climate change and As consumers, we are receiving information about it. Everywhere we look. Have you ever thought about how you are being communicated to? How is climate change presented? What wording was used? And why? And are their calls to action? How does it make you feel? think not only about news articles you read, but also about documentaries, podcasts, Hollywood movies, right down to your everyday life. Think about the newsletter you receive from your municipality. The assembly instruction on the last piece of furniture you purchase, or this section on your favorite clothing brand, website about their sustainable practice, communications surrounding climate change are pretty much everywhere and the need to be. In June of 2021, the Canadian government introduced the Canadian net zero emission Accountability Act, which puts into legislation Canada's commitment to achieve net zero emissions by 2050. Different companies across the country are making their commitment, much like we did in 2022, when we committed to leading the way to a Smart Energy Future by becoming net zero by 2030. The push on to stop the damaging pollution emitted into the environment on a daily basis, namely caused by burning fossil fuels. Scientists are urging that this is crunch time. So if you haven't already, now is the time to hone in on how and what you are communicating to your customers. So here is today's big question. What role do communicators play in motivating change within their audiences to take action against climate change? Our guest today is Amber Bennett, Deputy Director of Re Climate, Canada's first climate communications and Engagement Center. This new organization launched in 2022 brings together Canada's leading climate communication academics and practitioners, and aims to help communicators create strategies that inspire the public to support climate action. Amber is one of Canada's top climate communication strategists and capacity builder who works with groups across the country bridging gaps between research and practice. She led the groundbreaking Alberta narrative project and supported much of the foundational work to pilot and build reclaim it. Amber, thank you for joining us today. Amber Bennett 03:54 Thank you for having me. Dan Seguin 03:56 Amber, maybe you can start by telling us a bit about yourself and Re Climate How did you get into climate communications? How did Re Climate come to be and what does it aim to achieve? Amber Bennett 04:09 Okay, I'll try to hold all of those questions at once. Well, I am based in Calgary, Alberta, which may seem like an unlikely place for some for the executive director of a Canadian organization or Canadian center focused on climate communications and engagement at Carleton University. But that's where I live with my family. And what to say? Yeah, I mean, I think I've been circling around climate communications for a very, very long time. You know, the the mind has a funny way of making sense of things in retrospect, but I started with a Bachelor of Science and then I moved on to a public relations degree and then I worked with the mayor of Calgary on the one of the I forget which numbered cop, but it was a Copenhagen. And I think that was really the first time I began to think about what, what is climate change and had a certain kind of exposure to the, to the, you know what the challenge was and what not. And when I saw I kind of went on, and I did a master's degree. And it was when I had needed to choose a topic for my master's degree when there was the catastrophic flooding here in Calgary. And there is this, like, amazing paradox where the, you know, Calgary Stampede, which is the epitome, I would say, of the, you know, kind of old boys club. And when that happened, when the floods happened, their motto was come hell or high water come hell or high water, they were going to, you know, produce the show. And at the same time, one of the readings I was doing as a part of my master's program was also titled come hell or high water. And it was really about the science of climate change, and why it is making it so difficult. Why is it so difficult for humans to kind of wrap our heads around it. So fast forward, I completed a master's, and then did a series of really interesting projects. I did some work with a group out of the UK called Climate outreach, which is focused on climate communications and engagement as well. And then started working with a group of people here in Canada to set up a similar center or similar organization that would focus on supporting climate communicators, helping to kind of bring together the research that was happening, as well as the practice. And so that's really why Re Climate it is set up to do, we're really dedicated towards advancing the practice of climate communications and engagement through research, training, offering resources, pulling resources together, strategy, and developing strategy with other types of practitioners, as well as convening networks of both scholars, as well as those people who are kind of out there in the real world doing campaigning and advocacy work and trying to, you know, communicate with citizens and whatnot. So, that's kind of where we're at. Dan Seguin 07:34 Now, Amber, it sounds like Re Climate, is a very diversified organization that brings together experts in social science, Public Affairs, and science. What kind of professionals work together in this environment? And what does it each bring to the table? Amber Bennett 07:55 Love this question. So Re Climate brings together I think I've said it research and practice. And so you have those practitioners who may be doing public engagement campaigns, they may be working for utilities, they may be working in local governments or other kinds of government, they might also be working in advocacy organizations. And so they often don't have the time, or I would argue the luxury of going into, you know, latest academic journals, or even, you know, kind of other thought leaders who are publishing in the field. Why? Because they're busy, they're doing the work. And so, you know, that kind of takes a lot of time to kind of go in and look at the research, track it down, make sense of it? They're also, I would argue, very few who have the time to do an evaluation, like after they've done something, what did we learn from it? You know, What, did we make a difference? You know, what kind of impact are we having, and similarly, just getting together with other folks, right, and talking about it and sharing what they're learning. So that's kind of on the practitioner's side. And so, you know, when we say we bring or convene networks of people together, we're really trying to do that, you know, we're trying to provide resources, synthesize, you know, research, both, perhaps, you know, it's public polling, or maybe it's social science, you know, what's happening in in, that's relevant, but also bringing people together to share with each other and learn with each other. So that's kind of that practitioner side. And, you know, there's also, I would say, sometimes a culture where people feel like they're competing with each other, you know, certainly within the charitable sector. So kind of, I think, for those folks who are coming in, who are kind of in the field, having that support and someone who's doing In the work on their behalf to kind of make sense of synthesize, pull it in together like yours, your five tips here, the things you need to do. That's extremely helpful. And then on the flip side, I think for researchers, you know, they're, they're kind of passionate, there's a reason why they're there thinking or trying to understand, you know, how to better engage people, or what's the right framing, or what are the values or whatever it is, because they're passionate about it. So by being able to kind of bridge from the practitioner world into a more academic or into a research field, we're able to just give people real world challenges. It's like, here's why practitioners are actually struggling with, you're an expert in this, please talk to us about it, or please, you know, this is the kind of information that they need. So, you know, kind of the practitioners, I would say, Bring the complexity of the real world, right, that we're dealing with real people, resource constraints, you know, various kinds of issues and whatnot, whereas researchers bring the kind of precision of being able to look at something with a whole body of understanding behind them to be able to kind of see, well, here's what may be operating within this situation, here's what we know about it. And here are some other kinds of interventions or approaches that we might be able to take. I don't know if that exactly answers your question. Maybe the scientists part, I would say they bring the public trust. Right. So whenever we're polling, you know, consistently, scientists come up on top as having high levels of public trust on climate and energy transition. And so I think that they bring that kind of authenticity. And, you know, they're not there, they're often unpolitical, right? They're not seem to be benefiting, you know, personally from talking about it. So they're really effective messengers. Dan Seguin 11:57 Wondering if you can share some insight into what the average Canadian's knowledge on climate change is? How much do they know about the main causes and the path forward? Amber Bennett 12:14 Well, I would say that Canadians probably know a lot about climate change. But what we measure, it's a little bit different. So when, and I would encourage folks to take a look at some of the reports that we have published on ReClimate.ca The one that I'm, you know, I kind of go back to was published this year, or maybe it was last year. But within these reports, we basically look across 65, or more, either private or publicly available surveys, or public polls or whatnot, and we kind of do it a roll up of okay, so it's not just one survey that has said, this is multiple surveys that are showing kind of trends and themes in in where the Canadian beliefs or attitudes or or mindsets are. So when you do that, and when we looked across, you know, 65, or so what you can see is, is that, even though you have the majority of Canadians that would say yes, climate change is real, and it is happening, almost half of them attribute both natural and manmade causes, you know, attribute the cause of climate change due to natural causes as well as as manmade. And so why is that important, is because when we get into the conversations around solutions, then without the kind of foundational understanding that burning fossil fuels creates pollution, which creates a heat trapping blanket, which is heating our planet, and causing all of these extreme weather events and natural disasters that we're seeing. Without that kind of clear understanding that burning fossil fuels is the cause of climate change. And when you get into the solutions, and what people actually have to do about it, the conversations a bit more, there's a lot of confusion, or there's a lot of room for confusion, which is kind of what we're seeing and I can talk a little bit more about that. So you know, I spend a lot of time in focus groups, and this kind of conversation comes up. So when we talk about solutions in the path forward, you talk about climate change, and you start to have discussions around what you are doing, you know, recycling will often come up, plastics will often come up. There's a whole kind of suite of things that people are doing, but very few people are able to name a particular policy or real intervention that you know, that will address some of the root causes. And we people on this podcast may not be like, Hey, why really. But you know, there are a lot of different people and for many climate change, even though they may be living within the impacts are the, you know, experiencing in their daily lives, they have many other kinds of concerns and priorities that are happening at the same time. So what I would say is that Canadians believe that climate change is happening, there is at least half that are uncertain, or would attribute it to both natural causes, and manm…

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    Summer Rewind: Decarbonizing Ontario's electricity grid with the IESO Jul 08, 2024
    Show notes

    Summer rewind: As demand for electricity increases, the need to diversify supply also rises. In Episode 120 of thinkenergy, Lesley Gallinger, CEO of Ontario's Independent Electricity System Operator (IESO), unpacks what's driving the transformation of the province's power system, the potential opportunities, and the obstacles standing in the way. From hydrogen innovation to resource procurement, listen in to learn how the IESO is helping Ontario navigate to a cleaner, reliable, and affordable energy future. Related links ● Lesley Gallinger on LinkedIn: https://www.linkedin.com/in/lesley-gallinger-784a194/ ● Lesley Gallinger on Twitter/X: https://twitter.com/lmgallinger ● IESO website: https://www.ieso.ca/ ● Hydrogen Innovation Fund: https://www.ieso.ca/en/Get-Involved/Innovation/Hydrogen-Innov ation-Fund/Overview ● Powering Ontario's Growth report: https://www.ontario.ca/page/powering-ontarios-growth ● Trevor Freeman on LinkedIn: https://www.linkedin.com/in/trevor-freeman-8b612114/ To subscribe using Apple Podcasts: https://podcasts.apple.com/us/podcast/thinkenergy/id1465129405 To subscribe using Spotify: https://open.spotify.com/show/7wFz7rdR8Gq3f2WOafjxpl To subscribe on Libsyn: http://thinkenergy.libsyn.com/ --- Subscribe so you don't miss a video: https://www.youtube.com/user/hydroottawalimited Check out our cool pics on https://www.instagram.com/hydroottawa More to Learn on https://www.facebook.com/HydroOttawa Keep up with the Tweets at https://twitter.com/thinkenergypod Transcript: Trevir Freeman: Everyone, well, it's officially summer. And it's been about four months since I took over the mic as the host of the think energy podcast, which is kind of hard to believe. It's been really fun having great conversations with great people in the energy sector. I now mostly know my way around the recording equipments and the software, and really feel like we're kind of just getting started and looking forward to where we go from here. That said, the think energy team is taking a break to recharge over the next few months, but also to plan our content for the fall. So, stay tuned for some great episodes in the fall. Not to worry though, we still have our summer rewind to keep you engaged. This is where we pick out some of the great past episodes that we've done and repost them. So, whether you're lucky enough to be sitting on a dock or going on a road trip, or if you're just keeping up with your commute through the summer, it's a great time to revisit our past content. You will hear past episodes from my predecessor and the host chair Dan second, as well as a couple of mine from the past few months. And you're welcome to check out your own favorite past episodes as well wherever you get your podcasts. We hope you have an amazing summer and we'll be back with new content in September. And until then, happy listening. Daniel Seguin: This is Think Energy, the podcast that helps you better understand the fast changing world of energy through conversations with game changers, industry leaders and influencers. So join me, Dan Seguin, as I explore both traditional and unconventional facets of the energy industry. Hey everyone, welcome back. In 1902 electrical pioneers met for the first time in Berlin now Kitchener, Ontario to discuss wiring Ontario's customers together to form a provincial electricity grid. Ontario's electricity grid, like all grids around the world was designed as a one way street, to generate, transmit, and deliver electricity to customers. It's no secret that nowadays new technologies are shaking up the way we produce and use electricity. Back then, these pioneers likely couldn't have imagined that the electricity grid would become a two way interactive system capable of supporting variable supply from renewable energy or accommodating electric vehicles, energy storage, home generation, and a host of other innovations. As the demand for electricity grows, Ontario's supply is diversifying, evolving and transforming at a speed we haven't seen in this industry. One thing is for certain, it's going to be one electrifying ride. On today's show, we're diving into the heart of Ontario's power system and shining a light on the organization that manages the province electricity sector. As we mentioned before, we are at the forefront of a power revolution. Of course, we need someone driving the ship to provide guidance on how Ontario's power system adopts a cleaner and more interactive machine. So here's today's big question. What is driving the transformation of Ontario's power system? And what are the potential opportunities and challenges? Joining us today is Lesley Gallinger, president and chief executive officer of the Ontario Independent Electricity System Operator. Under her leadership, the IESO oversees the safe and reliable operation of Ontario's bulk electricity system, ensuring affordable electricity is available when and where people need it. Lesley, so great to have you join us today. Now, your knowledge and experience of the electricity industry is extensive. Can you talk to us a bit about what drew you to a career in energy sector? And what led you to your current role? _____________________________________________ Lesley Gallinger: Well, thank you for that, Dan. It's great to be here, and I have spent the majority of my career in the electricity sector after spending the first third in a different sector. I certainly benefited from working all across North America and in Europe, for some very sophisticated multinational organizations with very talented team members. However, I always had this interest in electricity. And just for a funny story, my first grade school in Ontario was Sir Adam Beck, so I wonder if that was a bit of foreshadowing. But in reality, I had friends and colleagues in the sector who spoke quite passionately about the impact they were making with the work they were doing. And I was attracted to that. And sure I had some skills that I thought would be transferable. And the role that I have now embodies all of that, as we at the IESO are helping inform and execute on energy policy on electricity policy, specifically that will support Ontarians as we transition to an electrified and decarbonized future. I honestly couldn't imagine a better role to be in at this moment. Daniel Seguin: At a high level Lesley, what is the Independent Electricity System Operator and what is it responsible for with respect to Ontario's power system? Lesley Gallinger: The IESO works at the heart of Ontario's electricity system, ensuring that electricity is available where and when it is needed. We monitor Ontario's demand in real time, 24 hours a day, seven days a week, balancing supply and demand and directing the flow of electricity across the provinces transmission lines. We also oversee the electricity market, which includes putting mechanisms in place to increase competition and ensure cost effective supply. And finally, we also plan the electricity system by working with indigenous communities, with municipalities and stakeholders to forecast demand and secure enough supply to meet Ontario's needs as far as 20 years out. Daniel Seguin: Okay, very interesting. Finally, looking forward to your answer on this one here. Can you walk us through how you oversee and manage the electricity systems such as determining the type of supply required to meet demand for electricity in the province? In the short, medium, and long term? Lesley Gallinger: Yeah, thanks that that is a good and big meaty question. So we've spoken a lot about where we are now. So after having years of surplus electricity, Ontario is entering a period of growing electricity needs and demand is expected to increase by an average of 2% annually over the next two decades due to electrification and economic growth in various sectors, including residential, agricultural, and mining. One way that the IESO helps meet these growing needs is by securing new supply. In the short term, we have the annual capacity auction that we conduct that allows existing resources to compete. This is cost effective and allows the IESO to adapt to changing supply and demand conditions on a year by year basis. We also look at three to five year commitments for other resources, this timeframe provides more certainty while ensuring it doesn't get locked into commitments that no longer reflect those changing needs of electrification. And finally, in the long term, we look 20 years out to secure resources that require significant upfront investments in order to give suppliers the confidence they need to make those investments. So it's a bit of a layer cake with those three timeframes. Daniel Seguin: Great segway here. Okay. What do you see as the IESOs role in the future planning of the evolving electricity grid and your role in supporting the changing energy needs of the decarbonized economy? Lesley Gallinger: As Ontario's electricity system planner, we certainly have the long view. Our role is to ensure that Ontario's current and future energy needs are met both reliably and affordably. Our corporate strategy calls out three main ways in which we do this we ensure system reliability while supporting cost effectiveness, we're driving business transformation within the IESO and also driving and guiding the sector's future by working closely with indigenous communities, municipalities and stakeholders. On the decarbonisation front, our main role is to enable technologies that will help us decarbonize. There's lots of emerging energy resources that can help us build a zero emissions electricity grid and the IESO ensures that these resources can all participate in Ontario's electricity system and markets. We're procuring new resources under our flexible resource adequacy framework. We recently announced the procurement of over 800 megawatts of energy storage, which is the largest energy procurement energy storage procurement in Canada to date, that combined with 250 megawatts of the Oneida battery storage project, the IESO, with these projects, is taking steps to integrate this valuable and flexible resource. And in last December's publication of pathways to decarbonisation, we explored ways in which Ontario can move forward to an emissions-free electricity system. The Ministry of Energy consulted on our pathways report, and recently on July 10, very recently, announced a series of actions in its report powering Ontario's growth. And those actions include collaborating with Bruce Power and Ontario Power Generation on pre development work to to consider potential new nuclear generation reporting back on the design of our second long term procurement, which will acquire new non-emitting resources supporting a Ministry of Energy consultation on a post 2024 Conservation Demand Management Framework and assessing additional transmission needs to support new and growing generation and demand in the province. So quite a list of workforce ahead that we're very excited to undertake. And as our system operator for the province, we're certainly at the center of all of this. There'll be a continuing need for coordination with the broader electricity sector in order to plan an orderly transition to a decarbonize grid, there will also be an increased need to revisit how we plan the electricity system. The IESO is looking forward to working with the electrification and energy transition panel to identify ways to adapt and evolve existing frameworks in order to increase transparency and ensure communities and stakeholders are more aware of what we're doing and why. This work, the work of the EETP also takes a broader economy wide view, which reflects how the electricity sector is becoming increasingly dependent on other sectors like industry and transportation. So you know, in short, a lot of work and some very exciting work ahead. Daniel Seguin: Follow up question here for you. Now, some Ontarians are concerned about moving to variable renewable energy sources like wind and solar, while others are concerned about continuing use of natural gas. What have you uncovered in your work about these issues? And what would you like residents of Ontario to know? Lesley Gallinger: Yeah great question Dan, every type of generation has its own strengths and drawbacks based on its unique attributes, which is why Ontario maintains a diverse supply mix that can adapt to changing system conditions quickly. Renewables such as wind and solar are not emitting when they generate electricity, but they're also intermittent, meaning how much electricity they produce can change rapidly in response to weather conditions. And to help with this, the IESO is looking into hybrid facilities that combine renewables with energy storage. By 2026 we'll also have about 1300 megawatts of energy storage on the grid, which will help more efficiently integrate renewables. We're also going to start designing our second long term procurement which will focus on acquiring non-emitting resources and we'll be engaging on this with stakeholders and communities as we go. Natural gas, for example, has the main advantage that it can respond quickly to change in demand and system conditions, making it an important resource for us as we seek to maintain reliability. Ontario's demand fluctuates constantly throughout the day, and having access to natural gas can help us respond to sudden changes and maintain a balance across the system. It's also very important to recognize and something I'd like to emphasize for your listeners that overall emissions from Ontario's electricity sector are extremely low, the sector accounts for about 3% of the provinces total emissions. While this may increase slightly in the future, the continued existence of natural gas on the grid is an important resource to help us transition and it'll enable the near term electrification of other sectors which in total will drive down Ontario's emissions. Daniel Seguin: Okay Lesley, how will the efficiency upgrades at existing natural gas facilities contribute to meeting the growing demand? And what is the plan for these facilities as emerging technologies mature and the reliance on natural gas decreases? Lesley Gallinger: Yes, and as I mentioned in my earlier remarks, Ontario's definitely entering a period of increased demand and so with many existing contracts expiring, and nuclear plants undergoing refurbishment or scheduled to be decommissioned, coupled with increasing electrification of other sectors, the province is going to need more power in the immediate future and the natural gas expansions can help with this. In our pathways to decarbonisation report, we looked at the questions the minister posed to us, we looked at a moratorium scenario that would phase out natural gas over time as newer non-emitting resources come online, and in the report we concluded that we could be less reliant on natural gas in Ontario by the year 2035 and completely phased out by 2050. Efforts were made to align this report with clean electricity regulations, and that recognizes that the contribution of natural gas may be restricted over time, but for the meantime, we have you know, the important transitional resource needs, the natural gas fulfills. Daniel Seguin: Okay. In May of 2023, the IESO announced that it was moving forward with the largest procurement of energy storage in Canada. What can you tell us about these storage projects and their benefits? Lesley Gallinger: Yeah, this was a very exciting announcement for us the energy storage projects we announced in May were for grid connected battery storage systems, which will be an important step…

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    Current affairs with Francis Bradley, Electricity Canada's President and CEO Jun 24, 2024
    Show notes

    Electricity Canada's President and CEO, Francis Bradley, joins thinkenergy in episode 140. Hear about the shift to sustainable electricity, including the difficulties navigating provincial and federal policies, climate change directives, and funding gaps. Plus how Electricity Canada evolved from a technical exchange club into a national advocate for sustainable energy. From challenges to leading the charge, learn how governments and private sectors are working towards a clean, efficient electricity system. Related links: Francis Bradley on LinkedIn: https://www.linkedin.com/in/francis-bradley-3617802a/ Electricity Canada: https://www.electricity.ca/ The state of the Canadian electricity industry 2024 Getting to Yes report: https://www.electricity.ca/advocacy/getting-to-yes-the-state-of-the-canadian-electricity-industry-2024/ Trevor Freeman on LinkedIn: https://www.linkedin.com/in/trevor-freeman-p-eng-cem-leed-ap-8b612114/ Hydro Ottawa: https://hydroottawa.com/en To subscribe using Apple Podcasts: https://podcasts.apple.com/us/podcast/thinkenergy/id1465129405 To subscribe using Spotify: https://open.spotify.com/show/7wFz7rdR8Gq3f2WOafjxpl To subscribe on Libsyn: http://thinkenergy.libsyn.com/ --- Subscribe so you don't miss a video: https://www.youtube.com/user/hydroottawalimited Follow along on Instagram: https://www.instagram.com/hydroottawa Stay in the know on Facebook: https://www.facebook.com/HydroOttawa Keep up with the posts on X: https://twitter.com/thinkenergypod Transcript: Trevor Freeman 00:07 Welcome to think energy, a podcast that dives into the fast changing world of energy through conversations with industry leaders, innovators, and people on the frontlines of the energy transition. Join me Trevor Freeman, as I explore the traditional, unconventional and up and coming facets of the energy industry. If you have any thoughts, feedback or ideas for topics we should cover, please reach out to us at think energy at hydro ottawa.com. Hi, everyone, welcome back. On the show before we have talked about how energy is primarily a provincial jurisdiction in Canada, so that means that provinces and provincial governments set energy policy provincial grids are structured both in a regulatory sense as well as a physical infrastructure sense. at the provincial level, we've gone into some detail about Ontario's grid and talked about how it's kind of a distributed grid meeting most electricity customers in Ontario get their electricity from a local distribution company. Not every province is the same in any of those senses. Some are a little bit more vertically integrated, meaning there are you know, maybe a single entity that gets you all the way from generation to distribution. There's different regulatory frameworks. The point is there's a lot of diversity across the country. Now, as much as that is a provincial jurisdiction, there is a role for the federal government to play here at that national level. There are some national policy directions that are important and that impacts energy policy. Climate change is a great example. So the federal government has jurisdiction to set targets and come up with strategies to address climate change for the country. Things that the federal government is doing currently is enacting a clean electricity standard with the goals of decarbonizing electricity generation in the country, so making sure that we stop using fossil fuels to generate electricity on a large scale. The federal government also supports decarbonisation efforts for buildings and for transportation, and they put money into those things. And those efforts impact electricity grids and impact markets. The federal government also has a role to play when it comes to major projects and providing approvals for those projects to move forward. And that includes energy projects. So new generation or new transmission, you know, things that are using land or moving across land, there's a role for the federal government to play there. So enter electricity Canada, the national voice for electricity utilities in Canada. Now, we've talked before about the sort of provincial equivalent that advocates on behalf of energy utilities. This is the national voice here for electricity, utilities, electricity, Canada has been around for over 130 years now. And their focus, at least in the last while has been on federal advocacy. I'm not going to tell you too much about electricity, Canada, because my guest today is going to talk a little bit about that. But just as a primer. So they have recently published their 2024 state of the industry report, which looks at the need to accelerate some of these major initiatives in the electricity sector to keep up with the energy transition that, as we've talked about many times is already underway. It's already happening. And we are just trying to keep up really. So my guest today is actually making his second appearance on the podcast as Francis Bradley, who is the president and CEO of electricity Canada, and has held a number of different roles within electricity Canada as well prior to becoming the president CEO. He also has a number of key positions on national committees and working groups, which are focused on infrastructure, energy and electricity and other related topics. And most interestingly, he also hosts his own podcast, the flux capacitor, which I highly recommend you check out. Francis, welcome back to the show. Francis Bradley 04:01 Delighted to be here. Thanks for the invitation, Trevor. Trevor Freeman 04:03 So I know you've kind of given us the background before but electricity Canada has been around for over 130 years now, which is older than our kind of modern, interconnected grid, at least here in Canada. Can you just remind us of the role and the mandate that your organization plays in the electricity sector? Francis Bradley 04:20 Sure. Absolutely. In fact, somewhere we have a photograph of like the first meeting of what at the time was the Canadian electrical Association at Niagara Falls in 1891. Trevor Freeman 04:32 Wow. Francis Bradley 04:32 But yeah, you know, where, where we're at today. So basically, you know, if you turn a light switch on pretty much anywhere in Canada, any province, any territory, everything it took to generate, transmit and distribute the electricity to turn that light on was probably done by by one of one of our 42 members. They're in every single province, every single territory to use the official the official definition you know, Our mandate is to be the national voice for sustainable electricity for our members and the customers they serve. We do this through advocacy through sharing best practices, and, and education of stakeholders and the government. But yeah, our our members are basically the, you know, the 40 odd, biggest companies that generate transmit distributed coast to coast to coast. Trevor Freeman 05:22 And has that mandate changed over the course of the 130 years, or is it pretty consistent? Francis Bradley 05:27 No, it's It's actually that's that's an interesting question. It has changed a lot. And it's changed over the time since I've been at the association even and then aimless changed, that this is the third name. I'm on since since I joined the organization. Yeah, when it was first established. As you say, there was a letter A long time ago, 133 years, it was basically a little club for these people that were in this nascent industry who, who would, you know, swap stories about, about what they're doing and how it's working. And even at the time, there was still, you know, debates about should we be doing AC or DC and, you know, the whole, the whole, you know, battle between, between Westinghouse and, and, and, and the other folks, but so, you know, it was initially a technical information exchange organization, when I joined the organization, it was still very much technically focused, would do a big annual conference, we actually had a technical research division, and we do a couple of million dollars of research a year, back then. We then evolved, we, we evolved from the Canadian electrical association to the Canadian electricity Association. And our mandate began to shift away from Duke First off, where we stopped doing technical research and moved away from technical detailed technical information exchange, and increasingly our mandate began to focus on advocacy and and what the what the industry needs and what they what the members require, from an advocacy standpoint. And then in the 1990s, mid 1990s, we moved up into Ottawa because prior to that we'd been in Montreal, we've been in Montreal since the 1930s. Before that, we were in Toronto. So in the 90s, given that the focus had shifted pretty significantly to advocacy, and the principal government that we were seeking to advocate with was the federal government, the office moved up to Ottawa. And then three years ago, the name of the organization was changed from the Canadian electricity Association, to simply electricity, Canada. Trevor Freeman 07:42 So that's that switch from technical to the more advocacy and policy work. It's really interesting and actually kind of ties into this. This next question, I want to ask you, we've talked on the show before about, you know, how the Ontario electricity sector is structured. And it's complex, to say the least, but that's one of many in Canada, different provinces have different regulatory structures. Energy Policy is primarily provincial jurisdiction. But as you mentioned, the federal government has a say in that as well, especially when it comes to climate change recently. So I'm curious, how do you navigate all those differences and kind of speak with a common voice when you're dealing with so many different regulatory bodies? So many different governmental bodies? What's How do you find that common voice? Francis Bradley 08:31 Yeah, well, and you know, that that is that is that the fundamental challenge of, frankly, any organization in Canada that's attempting to, to operate at a national level, in a in a sort of domain that's principally principally provincial, but it's kind of even more so with electricity because of the differences in different jurisdictions. And, you know, you've noted that Ontario is complex in terms of the industry structure, it was more complex. When I when I first started in the sector, there were 300 and more than 350 local distribution companies, you know, so there's been a little bit of consolidation, Trevor Freeman 09:11 we have a paltry 60 something now. Francis Bradley 09:13 Yeah, well, that's right. Yeah, we're down into only double digits. But at the same time, you know, we also saw, you know, municipal municipal amalgamations that's taken place that have driven some of that, but, you know, so we've seen an evolution here in Ontario. But, you know, there are no two jurisdictions in this country that are the same. So you know, there isn't a like an electricity system in Canada, each province and territory is different, different types of ownership. You know, in some, it's like a private, privately run companies and in other jurisdictions, it's a Crown Corporation. In some like Ontario, it's a hybrid of a mix of different types of ownership. But, you know, there's there are there are crowns, there are municipally owned there are privately owned companies as part of the value chain. And so you know, It results in a pretty disparate system, both in terms of how the sector is structured, and also how its regulated. Because the regulations are different in each and every one of those jurisdictions. And so, you know, this presents us with a huge problem, frankly, and we see it now, in particular, with respect to all of the politics around climate change, because electricity is a provincial responsibility, but we have one level of government, the federal government, providing direction in this space. And then we have another level of government, that the provincial level, you know, reacting to what those national objectives are, we've got multiple regulators across the country offering their own interpretations on what can and cannot be done in this space. And it proves to be a problem, you know, with respect to the challenge to build the infrastructure that's going to be needed to meet our, our, our aspirations, our future aspirations, this complexity makes it very difficult to get things moving and get things done. And, you know, in addition to that, honestly, in the past year, you know, if you look at the relationship between federal government, the federal government and provincial governments, in some parts of this country, it's starting to smell and feel like just raw geopolitics, right. You know, all sides, frankly, on some of these files have have demonstrated the sort of dogmatic posturing that you'd expect between countries, not necessarily between provinces, and a central government and in a confederation. But, you know, the thing is, and I keep going back to this, if you sort of strip out the posturing that we see, the fact is, we actually agree on much more than than the areas where we disagree. And here's an example. You know, if you look at the, the,the provincial opposition in a number of provinces to the Government of Canada's clean electricity regulations, you would think that, you know, we're on completely different pages here. But, you know, if you ignore some of the, you know, saber rattling, and the point scoring, you actually can see that there is general agreement provincially. And federally, that electrification is going to be, you know, the long term solution to our climate crisis. In fact, the only thing that's in dispute is sort of the deadline and the methods that we're getting there. So, you know, there, there are expressions in some provincial capitals, about the clean electricity regulations as the method and you know, and dispute as to whether or not it should be 2035, or a different time frame, but everybody is on the same page of, you know, an aspiration to have a non omitting sort of a clean system throughout the economy by 2050. And so, you know, that's the starting point that we work from, is that, oh, yes, there are certainly disparate views on some of the methods and some of the policies, but objectively, we are all attempting to head essentially in the same direction. We're all heading towards, like this net zero future. It's just a question of, how are we going to get there and, and with the time you're going to be, Trevor Freeman 13:18 it's interesting to hear you say that, because that's, you know, a couple episodes back, I talked to David Caletto, from abacus, and he was talking about just the general populations opinion on things, and it mirrors that exactly. So it's not just our sort of various jurisdictions and levels of government that kind of agree, where we need to get to, they just don't know how we're gonna get there. They don't agree and how we're gonna get there. Francis Bradley 13:40 Yep. Trevor Freeman 13:41 Your average Canadian also agrees with that. Canadians feel that a an electrified energy sector energy system is better than a fossil fuel one. Francis Bradley 13:50 Yep. Trevor Freeman 13:51 We just don't agree on how we're going to get there. So yeah, that's great. Great to hear. And that leaves you guys to sort of thread that needle and find the common points and amplify that I imagine. Francis Bradley 14:00 Absolutely. And, you know, and, and attempt to come up with solutions. You know, given that our principal role is, is is in advocacy, you know, that that…

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    Energy Policy Deep Dive with Nicholas Rivers (Part 2) Jun 10, 2024
    Show notes

    Get to the bottom of how policy is ushering along the energy transition. In part two of the series, Associate Professor Nicholas Rivers shares how energy policies are helping shape the actions taken to address climate change. From decarbonizing buildings and transportation to the hard-to-tackle parts of Canada's economy and its major industries. Plus policy's role in supporting distributed energy and resources. Dive back into the conversation in episode 139 of thinkenergy. Related links ● Listen to part one: https://thinkenergypodcast.com/episodes/energy-policy-deep-dive-with-nicholas-rivers-part-1/ ● More about Nicholas Rivers: https://uniweb.uottawa.ca/members/969 ● uOttawa Institute of the Environment: https://www.uottawa.ca/research-innovation/environment ● The Canadian Climate Institute: https://climateinstitute.ca/ ● Trevor Freeman on LinkedIn: https://www.linkedin.com/in/trevor-freeman-p-eng-cem-leed-ap-8b612114/ ● Hydro Ottawa: https://hydroottawa.com/en To subscribe using Apple Podcasts: https://podcasts.apple.com/us/podcast/thinkenergy/id1465129405 To subscribe using Spotify: https://open.spotify.com/show/7wFz7rdR8Gq3f2WOafjxpl To subscribe on Libsyn: http://thinkenergy.libsyn.com/ --- Subscribe so you don't miss a video: https://www.youtube.com/user/hydroottawalimited Follow along on Instagram: https://www.instagram.com/hydroottawa Stay in the know on Facebook: https://www.facebook.com/HydroOttawa Keep up with the posts on X: https://twitter.com/thinkenergypod Transcrpit: Trevor Freeman 00:07 Welcome to think energy, a podcast that dives into the fast changing world of energy through conversations with industry leaders, innovators and people on the frontlines of the energy transition. Join me Trevor Freeman, as I explore the traditional, unconventional and up and coming facets of the energy industry. If you have any thoughts, feedback or ideas for topics we should cover, please reach out to us at think energy at hydro ottawa.com. Hi, everyone, welcome back. Okay, so this is part two of my conversation with Nicholas rivers about policy, and specifically how policy is and will in the future, shaping the different solutions and different actions that we can take to address climate change and to usher along the energy transition that has already started. As a refresher, Nicholas rivers is a Professor of Public Policy and International Affairs from the University of Ottawa. And his area of focus is really the sort of research into an evaluation of environmental policies. So this is a great conversation. And if you haven't listened to the previous episode with Nicolas, I really encourage you to do that it kind of lays the groundwork and really helps feed into this part of the conversation. On today's episode, we're going to talk about decarbonizing buildings, decarbonizing transportation, about some of those hard to tackle parts of our economy, kind of those major industries, as well as the role of policy and supporting distributed energy resources. So solar panels and batteries and things like that. So it's really a great conversation, start with the previous episode, if you haven't already. And then thanks for joining us here for this one. And happy listening. Okay, so we've talked about generation at the grid level, but let's talk about what we call distributed energy resources. And for our listeners, just a reminder, this is things like rooftop solar behind the meter storage, so having batteries at homes or businesses, which we are going to need a lot more of in the future. And we're going to see a lot more of on our grid in the future. What policy tools are out there that could help ramp up the implementation of these resources? Is it as simple as you know, incentives to lower the upfront cost? Nicholas Rivers 02:21 Okay, good question. Maybe I'll just start out by giving some broader perspective about why we why we might want to go down the distributed energy route. So as you mentioned, a distributed energy resources are things like rooftop solar, right on the kind of residential building or a battery pack in the garage of your residential building. And this is a different approach than the way we normally approach the electricity sector, where our generation and storage infrastructure to the extent we have any is centralized, right. So in a centralized system, if it's solar, it would be a big utility scale solar project in a field somewhere, or now we're starting to see the ISO just approved a bunch of battery storage projects that are going to be you know, big centralized resources, really big batteries, or it could be pumped hydro, or you know, compressed air storage that that are not in someone's garage, they're, you know, these big sites that are that are well away from people's homes typically. So why would we want to change the paradigm and, and go towards this kind of decentralized type of approach where the where the resources are in people's homes or on people's homes? I'd say there was a couple of reasons we might want to go that route. One is that the distributed resources if they're in people's homes, well, they're close to the demand. Right? So if people you know, ultimately, the reason we have electricity generation is to meet people's and industries demands for electricity. And putting those resources right at the source of demand means that we don't need so many wires to connect the resources to the to the demand centers, and potentially that there's less congestion on the wires and, and less losses getting from the source of supply to the source of demand. So that's one reason. Another big reason I think, that will become more important in some areas of the world and more important as we scale up decarbonisation is land use, and then, you know, we got all these rooftops that are just sitting there. And putting solar panels on those, basically wasted surfaces is a way of conserving land as opposed to to putting new solar panels in a field that has other uses. So I see that as being a potentially really important reason why we might go down that decentralized route. It's important to say that land use constraints are not binding in Ontario today for for, especially for zero carbon resources, right? There's we're lucky in Ontario that we've got a fair amount of land per person. And we've also not got that many solar or wind or battery resources currently. And so the pressure that we're putting on our land from those types of centralized resources are pretty small. But certainly as we try to go further on that decarbonisation route, thinking about land constraints is going to be important. I would say that there is a downside to going the decentralized route. And that's that it's more costly. So generating electricity at a home, is storage of storing electricity at home is typically quite a bit more expensive than doing it at a utility scale, in a in a kind of centralized manner. And that's just because, you know, a solar panel cost what a solar panel costs. So you're getting, I think, the same basic solar panel, solar module, and a centralized system, compared to a decentralized system. But all the side costs, the cost of planning and installing, and all the racking that has to go for solar panels, same with batteries, is a lot more expensive, when it's done kind of on these boutique, individual roof projects, compared to what it's done in a centralized approach. And so what we're gonna do as we think about, you know, do we go down this more decentralized route or more centralized route? So we've got to think, are these land benefits and the benefits we get from having the resources close to the demand? Are they outweighing the extra cost that we're paying from, from going this more decentralized route? Trevor Freeman 02:25 Yeah, so it's kind of an economies of scale question of obviously, investing in the infrastructure for a large scale solar installation gives you that, you know, more bang for your buck on a kilowatt hour basis, then each individual rooftop project, but I guess there's that aspect of, you know, customer control and customer preference of, you know, I like the idea of having my own power generated on my roof, it gives me some control, it gives me some redundancy. It also kind of protects and let me know what your thoughts on this it. It locks me into cost for energy, at least for a portion of my energy for the life of that equipment, rather than sort of being at the whim of rising utility costs over time. Is that a fair assessment? Nicholas Rivers 07:15 Yeah, I think that's right. Solar panels and batteries, both have a free long lifetime. So once you've paid for them, you know, what you paid, and you're going to be able to amortize them over the length of the investment. Of course, that assumes that you're going to be living in the same house for the 20 or 30 years of the investment. Trevor Freeman 07:31 Exactly. Yeah. Nicholas Rivers 07:32 So I think there is still a risk there. But I do agree with you that it does put more control in individuals hands more, it gives people an ability to kind of choose their own destiny with respect to energy, it allows them to make a zero carbon investment that, you know, they maybe feel really strongly about, and that isn't being made on their behalf at the central level. So I think you're right that it does give more autonomy to households. Trevor Freeman 07:58 Yeah. And the current way that we I guess, sort of funder incentivize, if you will, on rooftop solar, for example, is just through the rates, so you're offsetting your rates. And that is how you get your payback on your panels. I know you and I have chatted previously about the model in Australia. Can you tell us a little bit about how they've approached this? Nicholas Rivers 08:20 Yeah. So, South Australia also uses this net metering approach. So basically, net metering means when you're consuming electricity, you can think of like an old analog meter, the meters running one direction. And then when you generate electricity, and return it to the grid, when you're not using as much as you're generating, the analog meter runs the opposite direction. Of course, these meters aren't analog anymore. They're digital, but they're allowing you to kind of reverse the meter at times when you're generating. Trevor Freeman 08:50 Yep. Nicholas Rivers 08:51 South Australia has been a real leader in getting solar on people's rooftops. Now, you might think, oh, it's super sunny in South Australia, and it is super sunny in South Australia. So it makes sense to have solar in people's rooftops. But there are lots of areas in the world that are super sunny, that have had not nearly the success that South Australia has had in putting solar on rooftops. And I would think one of the big reasons is, is program design. So they have designed a program that makes it really easy to access the program and access the incentives that are part of the program, and that lets household navigate it pretty seamlessly. So my understanding of the program is it's an incentive, which is the typical way we we kind of provide incentives for people to to undertake these novel technologies. It provides households with a you know, an upfront payment for for putting solar on the roofs. But I think that the real trick is that it's not provided to the household. And there's not an onerous application process that happens. It's provided to the to the companies that install solar panels on people's roofs and they pass through the incentive. Have to the household. So all of the paperwork and the planning is undertaken by the company. And the household, basically, just, as my understanding just says, Yeah, I want some solar panels on my roof. And, you know, tomorrow the solar panels are on the roof. And they don't have to go through the kind of extensive paperwork and the qualifying and the waiting for the, the incentive to be paid. It's all done upfront. And it's all done with a minimum of paperwork. Trevor Freeman 10:23 Yeah, so from a homeowner perspective, in Canada versus in South Australia, South Australia is just seeking a much cheaper cost for solar, they don't have to jump through the hoops. That's all kind of done taken on by the government and by the the industry. Nicholas Rivers 10:39 Yeah, and we do have incentives for solar here. In some provinces anyway, and there have been incentives federally, but they're there, they're more onerous to apply for. And they put the homeowner in the position of having to pay for the system upfront, and then waiting for the rebate. And it's a big outlay for homeowners and the rebate is uncertain, right? You can put the paperwork in. And of course, you think you're gonna get it back. But there's always that chance that something went wrong, and you didn't do it quite right. You don't get the rebate. Yeah, there's a risk there. So I think this this kind of upfront payments program that's processed by the company is as a real, you know, something we could learn from in Canada. Trevor Freeman 11:16 Right. So that's potentially a key role. And this may be applies to other programs, as well of, of government have policies to take on that administrative burden take on that risk, if you will, away from the end user to make it seamless and streamlined for the end user and easier to do Nicholas Rivers 11:33 People have better things to do than think about energy. And so I think that Trevor Freeman 11:38 Or fill out paperwork, Nicholas Rivers 11:39 yeah, fill out paperwork, and just, you know, they don't want to spend their time, you know, trying to figure out if the incentive is going to cover their net metering benefits they wants to be they want to be added be as easy as possible. Trevor Freeman 11:52 Okay. Yeah, that makes a lot of sense. Okay, moving along, then to transportation. This is something of course, that Canadians will be pretty familiar with. We've seen a big move toward electrifying personal vehicles, there are more EVs out there today than ever before, you know, going back into even recent memory, it seemed like a rare thing to see an EV on the road. And now it's not at all, but there's still a long way to go. As much as we've got a lot more, we still are overwhelmingly using fossil fuels for our personal transportation. What kinds of approaches will help speed that transition up? We have a federal rebate when it comes to buying electric vehicle. Is that enough? Or are there other tools that we can use to speed up that transition? Nicholas Rivers 12:36 Yeah, we're at about 11% of new cars that are sold are electric these days, and about one and a half percent of our fleet, because it takes our fleet a long time to turnover, right. So even if we get to 100% sales, we could still be waiting another 20 years before we get to 100% of our fleet be electric. So this is not going to be something that resolves itself really quickly. Because it does take a long time to turnover and longtime for car manufacturers to change the kind of vehicles they're making. I'm convinced we're on the transition, and that it is underway no matter what we do in this sector, that that these cars will be eventually be as cheap or cheaper than internal combustion engine cars, and will deliver the range that we want and the performance that we want. We're not there yet. So So what do we do in the meantime, I would say one of the things we should be doing as governments is fixing kind of the chicken and the egg problem of electric…

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    Energy Policy Deep Dive with Nicholas Rivers (Part 1) May 27, 2024
    Show notes

    In this first of a two-part series, we unpack the vital role of policy in driving the energy transition with Nicholas Rivers, Associate Professor at the Graduate School of Public and International Affairs and the Institute of the Environment at the University of Ottawa. Join us as we explore the layers of policy implementation, the interplay of social and technological solutions, and the challenge of designing policies that balance data with public opinion and emotion. Related links More about Nicholas Rivers: https://uniweb.uottawa.ca/members/969 uOttawa Institute of the Environment: https://www.uottawa.ca/research-innovation/environment The Canadian Climate Institute: https://climateinstitute.ca/ Trevor Freeman on LinkedIn: https://www.linkedin.com/in/trevor-freeman-p-eng-cem-leed-ap-8b612114/ Hydro Ottawa: https://hydroottawa.com/en To subscribe using Apple Podcasts: https://podcasts.apple.com/us/podcast/thinkenergy/id1465129405 To subscribe using Spotify: https://open.spotify.com/show/7wFz7rdR8Gq3f2WOafjxpl To subscribe on Libsyn: http://thinkenergy.libsyn.com/ --- Subscribe so you don't miss a video: https://www.youtube.com/user/hydroottawalimited Follow along on Instagram: https://www.instagram.com/hydroottawa Stay in the know on Facebook: https://www.facebook.com/HydroOttawa Keep up with the posts on X: https://twitter.com/thinkenergypod Transcript: Energy Policy Deep Dive with Nicholas Rivers (Part 1) Fri, May 24, 2024 11:55AM • 52:17 SUMMARY KEYWORDS emissions, policy, carbon, price, work, canada, carbon pricing, technology, government, cost, climate change, electricity, big, emitters, action, ontario, regulations, podcast, climate, energy SPEAKERS Nicholas Rivers, Trevor Freeman Trevor Freeman 00:07 Welcome to think energy, a podcast that dives into the fast changing world of energy through conversations with industry leaders, innovators, and people on the frontlines of the energy transition. Join me Trevor Freeman, as I explore the traditional, unconventional and up and coming facets of the energy industry. If you have any thoughts, feedback or ideas for topics we should cover, please reach out to us at think energy at hydro ottawa.com. Hi, everyone. Welcome back. We've talked a lot on the podcast about how climate change is a big complex problem. And the entity transition that is already underway is also a big complex undertaking. These things require complex solutions to address them, it's not a single thing that's going to solve this for us. You know, we often think about solutions as being some kind of technology, either an existing technology or something that we're going to innovate on or invent in the future. And we talk about a lot of those on the podcasts, everything from heat pumps, to renewable generation to grid modernization. But technology doesn't just exist and grow in a bubble. And we can't just rely on technological solutions on their own to solve climate change or to help continue the energy transition. There is also a need for other approaches, for example, Social approaches, you know, we need to educate people on what climate change is and how it works and what we need to do to change it. We need to motivate people, we need to rile up people to create that desire for change, and create the political and social will to go behind that. What are the key drivers to help advance all of these different moving parts, if you will, is policy our policy solutions, you can really think of policy as the foundation or the bedrock upon which all these other things are built. And when we talk about policy, we're talking about all different levels. So from the federal government, to provincial governments, who are municipal governments, and you know, this is the Canadian context, we're in Canada speaking about this. So if you're listening from a different country, you know, slot in your various levels of government there. Our policy solutions are what push or pull certain actions. And I'm sure we're all familiar with the sort of carrot and stick analogy. Carrots being those things dangled in front of us to help us move towards some more desirable action or desirable state sticks being you know, the sort of prod or push that are going to, you know, help push us into something or away from something else. These policy solutions are really designed to make a desirable action easier and more likely, and to make an undesirable action harder and less likely. So in the context of climate change, for example, the desirable action might be the adoption of cleaner technologies, like EVs or renewable generation, or speeding up the development and adoption of new technologies, where the undesirable action might be just the status quo like doing things, the way we've always done them, we know we need to change that's an important piece, or the undesirable action might be just the continued use of fossil fuels, we need to move away from that that's the undesirable action that's not going to help us solve climate change. And so we're going to talk about policy today. And I'll talk about our guests in a minute. But I think it's important to also remember this next piece, and that is that policy is tough. It is tough to know what will work and what won't work. It's tough to know what the thing is, that's going to really create the desired action you want, that people are going to get behind. policy can be uncomfortable, as I've said, policy prioritizes certain actions over others. And we've talked about this before Canadians and more broadly, people, we are not homogenous in the way that we think or care about things we don't always care equally about the same things. We all have different pressures and drivers in our lives. We all have different contexts in our lives, and so naturally, our priorities aren't always going to line up. And when you have a policy that is designed to prioritize certain actions over others, some portion of the population is going to disagree that that's the right priority. And in practical terms, it's usually a bunch of different portions of the population that agree or disagree in varying amounts. Policy is often designed and applied in what you might call a scientific way. So certain policy tools have expected outcomes that can be measured. There are, you know, metrics that go behind these things. But policy is often received by the general public in a very decidedly non-scientific way. In fact, we typically receive policy in a more emotional way, how we feel about some new policy really is what drives our opinion and our action around that policy. And that's more so than maybe the data will drive our opinion in our actions. In fact, the way that we look at that data is often influenced by sort of our emotion around how we feel about something. And I'm not saying that's wrong. That's kind of just human nature. And we all do it no matter what your I guess political leaning is where you fall in the spectrum. We all do this with, with policy, with the direction that our government is taking. But knowing that is helpful, and it lets us check in with ourselves against that, you know, are we really looking at things just based on the merits based on the data, or what is the emotion that we're feeling about certain things, I think that's important. So with that preamble, my guest today is here to help us pull apart the suite of policy tools that are already playing a role in helping us decarbonize and tackle climate change and some of the things that might be upcoming, or other options that are out there. And I'm gonna say off the bat that there's a lot to talk about here. This is quite a long conversation. So we're actually going to split this into two pieces. We'll have part one and part two, and kind of break it up into two different episodes so that they're a little bit easier to get through. But I'll say in advance, I appreciate you sticking through. I think this is an important topic of conversation and, and my guest today knows a lot about it. So I'm happy to have Nicholas Rivers on the podcast today. Nicholas Rivers is a Professor of Public and International Affairs from the University of Ottawa. His research focuses on the economic evaluation of environmental policies. He is a member of the Canadian climate Institute and served as a co editor of the Journal of Environmental Economics and Management, and was previously a Canada Research Chair in climate and energy policy. Nick regularly provides advice on energy and climate policies to federal and provincial governments, as well as nongovernmental organizations. So Nicholas, welcome to the show. Nicholas Rivers 07:32 Thanks for having me on, Trevor. Trevor Freeman 07:34 So let's start with a little bit of background, can you give us a sense of how you got to where you are today, and really specifically how you came to be passionate about environmental policy? Nicholas Rivers 07:44 Okay, well, this is something where, you know, maybe it's easy to look back and paint a linear trajectory. But certainly, this is not, this was not the aim. From a young age, I didn't have career goals, I would say leaving high school had no idea. I had been pretty good at math and, you know, a tinkerer. I liked playing with capsula, which was this cool, mechanical toy, and Lego, and that kind of thing. And so I did engineering, without really an end goal in mind. I did mechanical engineering. And at that time, you know, when I was in my late teens, early 20s, I started reading books about kind of nascent books about climate change books about energy, I had friends that were really active in the kind of energy and environmental movements, and started to realize that that's maybe where I wanted to focus, my energy, my own energy. And so in my mechanical engineering degree, I wanted to start working on renewable energy, which was really at the beginning at the time, this was the late 1990s. So at the time, there was one wind turbine in Ontario. I went to visit it during my mechanical engineering degree, the Pickering one, right. It was up. No, it was up on the Europe like you're on the Peninsula, Brisbane and so Okay, gotcha, right by the British nuclear station. It was a test one, it wasn't a big commercial wind facility. So I was just like, digging around trying to find interesting stuff. And wind turbines look really interesting because they were big, and they were in moved and they you could see something they were doing. I didn't end up working in wind facilities. I ended up getting some jobs and hydrogen worked with Ballard and Hydrogenics as a co-op engineer. So that was my kind of foot in the in the renewable world. And I have to say, I didn't really like it all that much. I was doing, you know, I was in the field that I kind of wanted to be in the engineering field. And it's working on renewables, but the jobs I was doing didn't appeal to me. So they were really kind of small bits of the renewable energy picture and I was reading the books at the time by Amory Levin's and if you come across him or Paul Hodgkin and they were talking about big system transformations. And that's what I wanted to get into. And here I was figuring out the right radius to bend a pipe that transferred humidity from one stream to another. And it just wasn't jiving with the big picture that I was interested in. And so I ended up going back to university after my undergraduate degree, to study resource and environmental management with Mark Jackered, at Simon Fraser University. And Mark is one of the people that's been really central in thinking about energy policy and environmental policy in Canada over the last, I guess, like four decades now. And I think exposure to the way he was thinking and the way I was taught to think in that program really got me interested in and working on energy and environmental policy on a kind of as a career, and expose me to the possibility that you could work on this right, as a high school student leaving high school, you don't think that there's jobs working on energy policy, so it wasn't something I had in mind from for a long time. I'll also say, I grew up in a family that I don't know if they were environmentalist, but certainly fought a lot about the environment, you know, bird watching, and hiking, and that kind of thing. I was outside a lot when I was young, and I still like to be outside all the time. So I think there's, I've always had that kind of affinity for the environment. But this was a way that I could kind of blend some of my math skills or some of my interests and tinkering with, with some of those kinds of environmental affinity. Trevor Freeman 11:31 Yeah, I mean, this is definitely not an episode where I need to give my backstory, but there's so much of what you said that, that I relate to from drawing a connection between playing with Lego as a kid and ending up in engineering school, that's totally my pathway as well, and being you know, good at math, getting into engineering school, and then realizing, hey, there might be something else out here through a project. And so I did my fourth year design project, just on a whim on a green roof for one of our university buildings Nicholas Rivers 11:59 Ah cool. Trevor Freeman 12:00 I would say that's kind of a point where it pushed me into this more sustainability focused career. So great to hear that. Thanks for sharing that. And certainly, I can appreciate the lack of linearity and a lot of careers in this space, and really the Nicholas Rivers 12:14 Exactly, yeah Trevor Freeman 12:15 everything. So. Okay, so the topic here, we're talking about today's policy. So I want to have you help us understand what is the history of decarbonisation policy in Canada? You know, we're at a point today, and we'll talk about maybe where we need to go moving forward. But what has come before this? When did we start seeing policies focused on reducing carbon in Canada, give us a bit of a crash course on our history so far. Nicholas Rivers 12:45 Sure, I'll do my best. It's not that new. Right. We've known about this for a long time. In fact, I teach a course on climate. And, you know, in digging around for that course, we have studied climate change for over a century. The first, I think, relatively modern looking predictions about climate change came in the 1800s, the late 1800s. And so we have had a pretty good sense of where we're going for a long time. The first real government assessment of the severity of climate change came in the 1960s. This was a US government and national assessment, National Science Assessment. And it pretty much got the contours of the problem right, in the sense that we haven't, haven't changed our understanding of the science of climate change all that dramatically since the 1960s. The projections from that time still hold out today. In Canada, we didn't act quickly after the 1960s reports in the US, although we certainly followed them. The first thing Canada did, I would say, was hold a big international conference on climate change in the late 1980s, in Toronto. And this is a period, you know, when we were holding a number of these big international conferences on sustainable development, for example, or on climate for the first time, and Canada did its part in Toronto in '88 by holding this conference called the World Conference On The Changing Atmosphere. And at that conference, it was recognized that we can't keep going the way we are on climate. It's not sustainable, we're going to end up with more of a warmer world than we want. And we promised…

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    Heat Pump Check In with Shawn Carr May 13, 2024
    Show notes

    Heat pumps are proving as one method to combat climate change and decarbonize Canada—because they can operate at 300% efficiency (or greater!), while a standard furnace runs between 93–94%. In this episode of thinkenergy, Hydro Ottawa's Shawn Carr, Manager, Customer Experience, chats his experience using a heat pump in his home. From the upfront costs to how it works and its role in reducing carbon emissions. Listen in for practical benefits of heat pumps and their future in our homes and businesses. Related links ● Shawn Carr, LinkedIn: https://www.linkedin.com/in/shawn-carr-6797b612/ ● Air Source Heat Pump Toolkit: https://natural-resources.canada.ca/maps-tools-and-publications/tools/modelling-tools/toolkit-for-air-source-heat-pump-sizing-and-selection/23558 ● Building Decarbonization Alliance heat pump report: https://buildingdecarbonization.ca/report/the-cool-way-to-heat-homesinstalling-heat-pumps-instead-of-central-air-conditioners-in-canada/ ● Trevor Freeman on LinkedIn: https://www.linkedin.com/in/trevor-freeman-p-eng-cem-leed-ap-8b612114/ ● Hydro Ottawa: https://hydroottawa.com/en To subscribe using Apple Podcasts: https://podcasts.apple.com/us/podcast/thinkenergy/id1465129405 To subscribe using Spotify: https://open.spotify.com/show/7wFz7rdR8Gq3f2WOafjxpl To subscribe on Libsyn: http://thinkenergy.libsyn.com/ --- Subscribe so you don't miss a video on YouTube: https://www.youtube.com/user/hydroottawalimited Follow along on Instagram: https://www.instagram.com/hydroottawa Stay in the know on Facebook: https://www.facebook.com/HydroOttawa Keep up with the posts on X: https://twitter.com/thinkenergypod Transcript: HYDRO_16749_ThinkEnergy_Podcast_May_13_Audio_Final Fri, May 10, 2024 12:03PM • 37:12 SUMMARY KEYWORDS heat pump, electrification, heat, air conditioner, electrify, technology, energy, people, backup, costs, emissions, work, trevor, installed, cold climate, project, ottawa, gas furnace, temperature, ev SPEAKERS Shawn Carr, Trevor Freeman Trevor Freeman 00:07 Hi, welcome to think energy, a podcast that dives into the fast changing world of energy through conversations with industry leaders, innovators and people on the frontlines of the energy transition. Join me Trevor Freeman as I explore the traditional, unconventional and even up and coming facets of the energy industry. If you've got thoughts, feedback or ideas for topics that we should cover, we'd love to hear from you. Please reach out to us, at thinkenergy@hydro ottawa.com Hi everyone, welcome back. On today's show, we're going to do something a little bit different. We're going to check back in with a previous guests. Just over a year ago, Dan, my predecessor in the host chair, interviewed Sean Carr hydro Ottawa's manager of customer experience about residential heat pumps, and in particular about his own experience with a heat pump installation for his own home. At the time, his heat pump was only about five months old. So now that he's been through another full winter with his heat pump, I thought it would be good to check back in and see how things are going. But before we do that, let me give a quick refresher on heat pumps. Now for those of you energy nerds or people in the sector, you may not need a refresher. But even those of you who aren't too sure what a heat pump is, are probably familiar with the technology. A heat pump is just a device that moves heat from one place to another. The most common example of this that you would be familiar with is a home air conditioner or a refrigerator. Both of those devices take heat, either from the air in your home or from the inside of your refrigerator and move it elsewhere. So over an air conditioner and moves the heat outside and for a refrigerator and moves the heat to the back of the refrigerator onto those coils that gather dust in you might every five years clean off. And they do this in order to make that space colder. A heat pump does exactly the same thing, except it takes heat from the outside air and moves it inside your home in order to make your home warmer. Heat pumps even look a lot like air conditioners, depending on the model. If you walk down the side of my house right now, you wouldn't even know that I have a heat pump. And not just an air conditioner because it looks exactly the same. Now you're probably thinking that's great, except when I want to heat my home, it's typically a cold day in the winter, and there is no heat in the air. But that's not exactly true, there is still some heat energy in the air. And thanks to the wonders of science, a heat pump can extract that heat from the air and move it into your home in the same way that when it's 35 degrees outside. And that's celsius for any nonmetric listeners out there. An air conditioner or heat pump can cool your home. I won't get into all the technical details here. But let's just say if you're not familiar with the ideal gas law, it is doing all the heavy lifting here. And I typically try to make this show not to engineering me but every once in a while I have to throw out a great formula like that. Okay, so now that we remember the basics about what a heat pump is, the next question is why are we talking about them again on the show? Well, if that's what you're thinking, I hate to say it, but this won't be the last time we talk about heat pumps either. In fact, this is the kind of thing that we'll probably revisit a number of times in the future. And that's because heat pumps are such an important technology for decarbonizing the way we heat our buildings, especially residential buildings, and even our water because yes, there are heat pump hot water heaters out there as well. Heat pumps don't use any fuel to create heat, they don't burn anything to create heat, they simply use electricity to move heat. And that makes him super clean. So there are no emissions at all from a heat pump itself, just the emissions that might have been created where that electricity was generated. And they are super efficient. You might have heard people talk about how furnaces are, you know, 93, or 94% efficient, or sometimes even 95, or 96% efficient. So that means for every unit of energy you put into that furnace, you get about, you know, 93 94, or whatever percent of that energy out as heat, you have to put more energy in, then you get out. Heat pumps, on the other hand, use a different scale, something called the coefficient of performance or COP. But it's essentially the same thing. And they can often run around 300% efficiency, and sometimes even higher. So for every unit of energy you're putting in, you get three units of energy out, which is awesome, you're getting more energy out than you're putting in that makes them really efficient. And if we're going to actually tackle the problems that lead to climate change, if we're actually going to decarbonize our society, and I really believe we are because I'm optimistic that way. Then almost every single one of us will eventually have a heat pump heating the space we live in, likely the space we work in as well and heating the water that we use as hot water. Okay, so now that we're back up to speed on heat pumps, let's check in with Shawn to hear how his journey has been going. Sean, welcome to the show. Shawn Carr 05:12 Thanks, Trevor. It's great to be here. Trevor Freeman 05:15 Okay, so let's get into it. Let's talk about your experience with a heat pump. Remind us again, what kind of heating system you had in your house and replaced and what did you put in? Shawn Carr 05:25 Sure, Trevor. So I went from a high efficiency condensing gas furnace to a cold climate heat pump. And I elected to go with electric heat as my backup heat source. And a backup heat source is typically required in our cold climate. And the two most common backup heat options are typically a natural gas furnace, or an electric resistance coil that goes inside your ductwork. So I went with the electric electric resistance coil option. Trevor Freeman 06:02 Okay, so you totally removed gas from your heating solutions in your house. And for context, can you remind us what is the size of your home and talk us through the economics of your heat pump? What did it cost you? And what remains? What did you qualify for. Shawn Carr 06:19 So I live in rural Ottawa, our home is approximately 2100 square feet. It's a single storey bungalow, but does have a basement. It was built in 2008. And we were the first homeowners. And so it's relatively modern construction, given that it's only about 15 years old now. In regards to the project costs. So looking back at things, our total project costs for the cold climate heat pump, along with that electric backup system, and I elected to go with some additional controls and bells and whistles. And the project ended up costing us around $17,000, before taxes and rebates. And so maybe just to talk through the rebates a little bit I did receive a $5,000 rebate through enter cans greener Homes program. And I took advantage of a zero interest loan through the greener homes loan program as well, which allows me to pay back that project cost over a 10 year period. With zero interest. Unfortunately, the Enter Ken greener Homes program is no longer accepting applications, it's been pretty successful. But I was obviously fortunate enough to be able to take advantage of that program. So that ended up bringing our total project costs down for the heat pump and backup system to around $12,000. Before Tax, I can say that I do know a handful of people that have gone through and installed heat pumps recently. And I am seeing that the project costs are actually coming down, which is great. My father is actually having a heat pump installed today. In fact, so I'm looking forward to hearing how that project goes. But it's great to see that more installers and companies are now starting to talk to customers about heat pumps. And that's going to make the transition become more feasible than ever for more people. And I do think that being said, if we do want to get to a point where there is mass market adoption, we do need to get the heat pump and backup heat system costs down to a point where they are comparable to a furnace air conditioner replacement project, for example, because people still think in terms of sticker price. And so I do think there's still a bit of work to be done here. But as installers get more comfortable with these heat pumps and manufacturing starts to scale up, I do think we'll see prices come down further. Trevor Freeman 08:52 Yeah, I mean, it's great to see that we're already seeing movement on that. But as you know, I mean, you and I both fall into that early adopter category and things tend to be more expensive and it will be great when we can get those costs down. So you've been living with your heat pump for over a year now kind of two two winters to cooling or heating season. Sorry. Let's talk about your initial thoughts. Let's start with comfort. How has your comfort been in your home? Shawn Carr 09:20 Yeah, that's I mean, that's a great place to start. And you know, I will say that we've actually we've noticed some comfort improvements since putting in the cold climate heat pump particularly in our basement actually because we always found that the basement was several degrees colder than it was upstairs the thermostat in our house is on the main floor obviously but since we've gotten the the heat pump installed, we've noticed that the temperature difference between upstairs and downstairs it's actually much smaller. The Delta is much smaller now than it was prior to the heat pump when we were heating with a gas furnace and I think the main reason for that is heat pumps are really designed to run low and slow, they provide a greater volume of air over a longer period of time that that air is being delivered at a lower temperature. But as a result of that we found a more uniform temperature throughout the house just because of how the heat pump was running so much more frequently. Trevor Freeman 10:22 Great. What about the experience of actually getting installed? I mean, once you made your decision to do this, how was it working with the contractors and getting it installed? Shawn Carr 10:32 It actually went pretty smoothly. I mean, first of all, we used a contractor that had experience with heat pumps and came recommended. So I think, you know, my advice to anyone who's considering getting one is, you know, get a few quotes, make sure they have experience with heat pumps and electrification or, and are actually recommending this technology. In our case, the total install took about two and a half days. So that includes obviously all the electrical work and running new refrigerant lines to the outside of the house replacing taking the old furnace out and putting the air handler in and installing the backup heat, I think just in terms of space, like the construction footprint essentially was about the same as it was before. So it didn't require more space in our utility room. Basically, we just went from a gas furnace to having a big box that looked very much the same in the same location. And of course, the unit outside looks and sounds very much like a traditional air conditioner. And that's because a heat pump is simply an air conditioner with a reversing valve. So the install was straightforward. Yeah, I would recommend it to anyone. Trevor Freeman 11:37 Great. Now,I mean, it's interesting, you talk about it being like an air conditioner. We often think about heat pumps as this technology of the future, this thing that we're all eventually going to have in our homes. Is it this futuristic piece of technology that's hard to operate? Or what is it like kind of, you know, setting it and letting it run? Shawn Carr 11:54 Yeah, so the operation is really straightforward. I think the best way I would describe it is you basically, it's a set and forget system, I think the one thing that we did learn about having a heat pump is we don't adjust the temperature, like the thermostat temperature settings, as much as we did before, when we had a gas furnace, I used to get in the habit of dropping the temperature several degrees overnight, and then having the setpoint higher in the morning prior to getting up. But what we've found is, in particular, with the heat pump, it takes a lot longer for that heat pump, and it has to run a lot longer and a lot harder to reach that temperature setpoint. Again, so in the morning, so what we found is the most comfortable approach was really just to pick a temperature that we were comfortable with and just let it do its thing. The one other thing I think that I will say is I you know, we did have a smart thermostat before we elected to go with a heat pump. And as a result of going with the heat pump, I actually had to use a proprietary Fujitsu thermostat because I had a Fujitsu system. So I lost maybe a little bit of the flexibility that I had with the previous smart thermostat where I could just talk to Alexa or Google and have it adjust the temperature. That way I don't have that flexibility anymore, but because we've really sort of set the temperature and we just forget it and we leave the setpoint pretty much the same all the time, 24/7 I haven't necessarily missed having that technology. And it's not to say that with all heat pumps, you're going to have to use a proprietary thermostat, many of them are compatible with the smart thermostats that are out there that just happened to be the case with the system that I elected to go with. Trevor Freeman 13:43 O…

    Full show notes at the publisher

    Modernizing the Electricity Grid with the Advanced Distribution Management System Apr 29, 2024
    Show notes

    If electrification is the future of energy, the grid must become more efficient and more reliable. All across Canada, from province to province to right here at home in Ottawa. Jenna Gillis, Manager of Distribution System Integration at Hydro Ottawa, joins thinkenergy to discuss the process. Listen to episode 136, as she shares how Ottawa's electricity grid is being updated with an Advanced Distribution Management System (ADMS) and what this means for you, your family, and residents throughout the region. Related links EV Everywhere Pilot Project: https://hydroottawa.com/en/save-energy/save-energy-homes/ev-everywhere Trevor Freeman on LinkedIn: https://www.linkedin.com/in/trevor-freeman-p-eng-cem-leed-ap-8b612114/ Hydro Ottawa: https://hydroottawa.com/en To subscribe using Apple Podcasts: https://podcasts.apple.com/us/podcast/thinkenergy/id1465129405 To subscribe using Spotify: https://open.spotify.com/show/7wFz7rdR8Gq3f2WOafjxpl To subscribe on Libsyn: http://thinkenergy.libsyn.com/ --- Subscribe so you don't miss a video: https://www.youtube.com/user/hydroottawalimited Follow along on Instagram: https://www.instagram.com/hydroottawa Stay in the know on Facebook: https://www.facebook.com/HydroOttawa Keep up with the posts on X: https://twitter.com/thinkenergypod Transcript: Transcript Ep 136 Fri, Apr 26, 2024 9:47AM • 55:30 SUMMARY KEYWORDS talked, grid modernization, grid, information, customers, devices, data, change, system, energy, asset, technology, call, great, operators, Ontario, working, dynamic, sense, distribution SPEAKERS Trevor Freeman, Jenna Gillis Trevor Freeman 00:07 Hi, welcome to think energy, a podcast that dives into the fast-changing world of energy through conversations with industry leaders, innovators and people on the frontlines of the energy transition. Join me Trevor Freeman, as I explore the traditional, unconventional and even up and coming facets of the energy industry. If you've got thoughts, feedback or ideas for topics that we should cover, we'd love to hear from you. Please reach out to us, I think energy at hydro ottawa.com. Hi, everyone, welcome back. I'm pretty excited about today's topic, because we're going to be tackling something a little bit technical. And that's always fun. And today is going to be the first of what might end up being a few different episodes looking at this term called grid modernization. So today, we're going to do just a high-level overview. And then over the next few months, there'll be a couple of different episodes that will dive deeper into some of the specific aspects of grid modernization. So that term grid modernization can be a little bit daunting, but that's okay. Our goal here is to pull apart these topics to better understand what they are and how they impact all of us, you know, from those of us working in the energy sector, all the way to the end users of our product, if you will, our electricity customers. So, let's start by a bit of a primer. And I think it'll be helpful to start by talking about what the grid is. So, the electrical power grid has been called the world's largest machine, and the greatest engineering achievement of the 20th century. And for good reason, thinking of it as a machine is a great metaphor, because just like a car, or a sewing machine or a snow blower, there are a lot of parts. And if any one of those parts breaks or isn't working as it's supposed to be, that will impact the overall function of the machine. And the same is true for the grid. And the parts we're talking about here are the holes, the conductors or wires, the transformers, the switches, as well as the many different sensors and meters and communication devices that help the humans in the mix, monitor and control things. The difference though, is that you know, even for a complex machine, like a car, there are hundreds or maybe even a couple 1000 parts. But the electricity grid, even if we just look at let's say hydro Ottawa as territory, there are hundreds of 1000s of parts. And if we scale that up to Ontario's grid, we're talking about millions and millions of individual parts all working together, so that when you turn your lights on at home, electricity that was generated hundreds or 1000s of kilometers away, flows into your device and makes it work. That's pretty impressive. And if any one of those millions of parts breaks, there's an impact somewhere on the grid. If multiple things break, or if there's something really critical that isn't working. That's a major problem. And we've seen these major problems. We've seen large scale outages. And you know, we tend to focus on Ontario's grid on this show, because that's what we call home. But our grid is connected to our neighboring grids, who are connected to their neighbors to form really an interconnected North American grid across Canada and the United States. It really is a modern engineering marvel. And, you know, we didn't just get here by chance. This was kind of designed, you know, back at the early days of the 20th century in the early 1900s. Electrical pioneers met for the first time in what is now Kitchener, Ontario to discuss what it would look like to wire Ontario's customers together to form a provincial electricity grid. Our predecessor company, the Ottawa hydroelectric commission, connected to that provincial grid in 1916. So, what we know as the Ottawa grid and our service territory is over 100 years old today. Before that, across Ontario, reliable and continuous power in the region was kind of uncommon, and really dependent on whether someone in the area like a major business or a wealthy individual had invested in a localized electricity grid for their own needs. An interconnected provincial grid was designed and implemented with a goal of making electricity available to all Ontarians regardless of where they lived. And that kind of evolution of the grid in Ontario is similar to how it worked in other parts of North America and indeed the world. That's kind of how grids came about in the last century. Ontario's electricity grid, however, like all grids around the world, was really designed as a one-way street. So, the idea was to generate and then transmit, and then deliver that electricity to customers in that order. Back then, those pioneers really couldn't have imagined an electricity grid that would need to support two-way interactive things like small scale distributed renewable energy, you know, solar panels on roofs or electric vehicles, or energy storage, and a whole host of other things that, you know, want to do more than just draw power from the grid. As we've talked about the ongoing energy transition, and electrification, which is being driven by the pressures of climate change, is really driving a societal shift to bring the electricity system into the 21st century, and to make sure it's powered with clean, renewable electricity. So, our grid is starting to undergo this major transformation. And we won't be able to do that effectively or affordably by just using the same strategies and technologies and the same pace that we've been doing it at over the last 100 plus years. We need to take it to the next level; we need to rethink what we're doing to upgrade the grid and how we're doing it. And that's really what grid modernization is, it's not saying we don't have a modern grid, it's realizing that the grid of 10 years from now needs to be different in a much bigger way than it's different from how it was 10 years ago, that pace of change needs to happen quicker. And we need to bring on new functionality. It's not just you know, incremental change anymore. To help us make some sense of this. I'm really happy to have Jenna Gillis to chat with today. Jenna is the manager of distribution system integration at hydro Ottawa and is leading this major project that we're calling at a high-level grid modernization, or more specifically, our advanced distribution management system, or ADMS. Jenna has been with hydro Ottawa for 16 years and has held a number of different roles on the operations and systems side of our business and really knows how our grid operates, how it's been operating, how the humans in the mix control things. And what's necessary to get us to that next stage that we've been talking about. Jenna, welcome to the show. Jenna Gillis 07:04 Great. Thanks, Trevor. excited to talk to about this today. Trevor Freeman 07:07 Yeah, I'm excited to. So, let's start at kind of a high level here and help our listeners understand how we currently operate our grid today. So, paint the picture for those of us who don't kind of get to see what happens behind the scenes. How do we control things today? Jenna Gillis 07:23 Yeah, for sure. So, what people might not realize that we actually have people sitting in a control room centralized control room that looks at our system 24/7 365. So, we've got people monitoring the system all the time. And they look at the grid state, and they help direct field activities. They look at triaging outages as they become aware of them. And right now, we've got visibility to our control room to all of our substations, so all of our, you know, high level devices, but only down to about 8% of the feeders and not actually all the way out to our customer level. So, what does that mean? That means that we still rely on customers calling us or reporting online when they experience an outage. And all of that information does make its way back into our control room operators. And it goes into a system we call the outage management system, which helps us track and identify where we might be seeing issues out on the grid. So, the operators then use that information to help make decisions in terms of controlling the grid where they need to open up closed devices where they need to send field crews to restore power. So, on top of that, most of these activities are done by field crews. So, the system operators are in direct contact with our crews out in the field and providing direction on where to go, what devices to you know, have them physically open or close in the field. And we've got about 10% of our system right now that has remote capabilities. So that means that the operators can choose to open or close those devices, basically at a click of a button back in the office sitting at a computer. So, most of what we do today really is human based and does take an expert control operator to be monitoring the systems and making the decisions. Trevor Freeman 09:08 Yeah, so we've got this like really complex system. It's, you know, state of the art system, if you will, that requires, like you say experts to keep track of what's happening to identify problems and make decisions based on the information they're getting. I just want to pick apart a few things you said there. So, when we're talking about our substations, just for our listeners, those are, you know, spots in our grid where we take higher voltage and step it down via transformers to a lower voltage, and then send that out on wires. That's what we call our feeders to our end customers. We know what's happening at that substation level, we can see whether the power is flowing or not whether switches are open or not. But once it gets past that we lose some of that visibility. That's kind of what I'm hearing from you Jenna Gillis 09:57 Yeah, exactly. And so that's why I'm saying like we still rely on those notifications from our customers to let us know where they're seeing the problems. And, you know, it comes into a system that, that we can look at in conjunction with that visibility that we have on the substations to help us understand what's going on. Trevor Freeman 10:12 Right. So obviously, it was such a, you know, an ordered and complex system, we're constantly in proving and renewing and upgrading. That's not new. That's not something that we're just starting. But as I've kind of hinted at in the opening there, we do need to change how we do things. So, before we look into where we're going, how do we renew and upgrade today, what's our current process. Jenna Gillis 10:36 So, we do have a robust asset management framework. So that's basically a program that tells us and we look at all of our asset information. And that's whether that's poles, wires, transformers, switches, breakers, basically anything we have out on the distribution system, and we look at and prioritize where we need to invest and where we need to renew, replace, install, upgrade, all of that kind of stuff. So basically, as we do that, right now, we go through, and we'll incorporate new technologies, like these remote-control switches, like these sensors to bring information back into the control room to help us continue to evolve, meet our customer or system needs. So, this, this process has worked really well in the past in terms of keeping pace with technology and the requirements of the grid and our customers. But right now, we're seeing that it's we're falling behind, it's too slow to parallel installation of these new technological devices, with these asset renewals or installation. So, I mean, if you think about it, you know, a pull out with wires on it can last over 50 years, we can't wait until we're replacing those 50 years from now to go in and add these new technological advancements. So, what that means is now we're looking at a hybrid approach. So of course, we're going to continue to parallel activities where it makes sense with these asset renewals and upgrades and replacements. But we also need to strategically start placing these devices in areas that we're going to gain benefit from, and I'm talking about benefit from a control room operator perspective, benefit from a safety or field crew perspective, but also where we can provide value to our customers in terms of, you know, expediting restoration efforts, or, you know, providing more flexibility into the system to allow more customer connections, whether that be, you know, new residential developments, or whether that's, you know, the next solar panel or battery or something like that. Trevor Freeman 12:25 Yeah, waiting for anybody who's familiar with kind of technological adoption curves and the pace of technological change, you talk about 50 years is the life of some of this equipment, the difference between technology and let's say, 1930, and 1980, wasn't a huge jump when it comes to poles and wires and transformers. But today, the difference of 50 years is night and day that we're not talking at all about the same technology. So, we can't wait for that whole cycle to go through before we're getting some of the tech in today that we need today in order to upgrade the system. So that's helpful to understand what that looks like. So, let's look forward then. And when we talk about where we want to go with grid modernization, how we want to change that, talk us through what we're trying to accomplish. Jenna Gillis 13:14 Yeah, so I think I'm going to paint a little bit of a picture here in terms of how I think about grid modernization, because that's really helped me contextualize the way that we need to do things differently. So, I think of grid modernization, that program in entirety as like a stacked or a layer pyramid. At the bottom, you have field devices. So, you have equipment that's remotely controlled, or providing data in the field. So, you know, we're talking about sensors, or meters or switches, things l…

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