Catalyst with Shayle Kann - Do data centers actually increase electricity prices? No...and yes
Episode Date: September 10, 2026You don’t have to look far to see the vitriol and backlash ignited by the rapid expansion of hyperscaler data centers. While critics and activists tend to focus their ire on resource consumption and... residents’ electricity bills, the reality of data center economics is far more complex. In this episode of Catalyst, host Shayle Kann sits down with Andy Lubershane, head of research at Energy Impact Partners, to unpack the nuances. They crunch the numbers behind utility rate structures, consider the "denominator effect" that can lower customers’ rates, and dig into the supply chain crunches pushing global power system costs higher. Shayle and Andy discuss: - Why a new data center can reduce utility rates for locals while contributing to rising costs elsewhere - How data centers impact utility tariff rates - Separating public perception of data centers from the reality of the grid - How soaring demand for transformers, switchgear, conductors, gas turbines, and labor is driving systemic cost increases across the power sector - Strategies to mitigate rising global grid costs, from load flexibility and distributed energy resources (DERs) to energy efficiency hardware - Catalyst: What comes after the data center backlash? - Catalyst: Enter the electric supercycle - Catalyst: Can AI revolutionize grid operations? - Catalyst: Inside the AI power wars - Open Circuit: As midterms approach, electricity bills are on the ballot - Open Circuit: Data centers have a Texas-sized energy problem - Latitude Media: The great home battery financing experiment Credits: Hosted by Shayle Kann. Produced and edited by Max Savage Levenson. Original music and engineering by Sean Marquand. Stephen Lacey is our executive editor. Catalyst is brought to you by EnergyHub. Peak season puts every grid to the test — and the utilities that pass are the ones that built flexible capacity before they needed it. EnergyHub works with more than 170 utilities to coordinate 2.5 million devices and 3.4 gigawatts of dispatchable flexibility through a single platform designed to perform when it counts most. See what that looks like at https://www.energyhub.com/ Catalyst is brought to you by Bloom Energy. Bloom Energy fuel cells deliver affordable, ultra-reliable onsite power for hospitals, utilities, and data centers – at speed and at scale. Learn more by visiting https://www.bloomenergy.com This episode of Catalyst is brought to you by ENGIE, the smarter energy supplier. ENGIE doesn't just provide the power to run your business — they supply the energy to move it forward, with reliable, flexible solutions built for what's next. Learn more at https://www.engieresources.com
Transcript
Discussion (0)
Latitude Media covering the new frontiers of the energy transition.
I'm Shayle Khan. I invest in early stage companies at energy impact partners. Welcome to Catalyst.
So last week on the show, I talked to Brian Janice about the data center backlash. What else?
And I alluded to this piece that my partner and frequent guests on the show, Andy Lubershane, published recently about one component of the backlash, which is the impact of data centers on electricity prices for customers.
The question is essentially whether data centers are causing electricity prices to rise,
to which Andy's answer was essentially no and also yes.
And I think it's really important and a not well-understood dynamic why these can both be true.
So I brought Andy back on and we're talking through it.
That's coming up next.
In May and June alone, millions of thermostats, batteries, and EVs across North America
shifted energy during peak periods, quietly becoming one of the most powerful resources
on the grid. Energy Hub builds and operates virtual power plants or VPPs that turn 2.5 million
customer devices into 3.4 gigawatts of dispatchable capacity. That's the equivalent of more than
three nuclear reactors worth of flexible, clean grid capacity, coordinated from customers' homes.
Learn more at energy hub.com. For data center developers, power availability is the defining
challenge, but it's not the only one. Today, growth also hinges on earning a community's
trust. Bloom Energy solves for both. Bloom's fuel cell platform delivers on-site power for the
digital age, sustainable, reliable, and scalable from tens to hundreds of megawatts. Bloom generates
electricity without combustion, meaning lower emissions, minimal water use, and quieter operation
than conventional solutions. That's why developers and utilities turn to Bloom to power their
operations, and you can learn more at bloomenergy.com.
Catalyst is brought to you by NG.
Your business has enough challenges.
Energy shouldn't be one of them.
That's why NG builds tailored energy solutions around real business needs
to support growth, strengthen predictability, and move businesses forward.
Because real power comes from shared expertise and relationships that outlast the paperwork.
Learn more at NG Resources.com.
That's E N-G-I-E-N-G-Resources.com.
Andy, welcome back.
I'm so excited to be back once again talking yet again about data centers and energy
and the interplay of those two things.
As one does.
So, okay, so you wrote this piece, I don't know, a couple weeks ago that I thought made one,
basically one central point that I haven't really seen anybody else make and that I think
is really important because there's all of this dialogue right now about the impact
of data centers on electricity prices and it's wrapped up in the,
backlash, et cetera, et cetera. But the key point that I think you made that I think we should
tease out in great detail is the separation of, I would say, the local from the global.
And the distinguishing between those two tells you kind of two very different stories
in answer to that question of what is the impacted data centers on electricity prices.
So let's talk about local first. What is the evidence today, like what can we say with any
degree of definitiveness about the local impact of data centers on electricity prices.
In other words, the impact that a data center within one's utility territory has on that
repayers bill.
I should say to begin with, the reason that I wrote this piece and the reason I've been
thinking about this question is, of course, because so many people in my life, not just
professionally, but also just friends and family members, because they know I work in energy,
of course, and because everyone in the public now has some association between data centers
and energy, which is part of the issue here, I had lots of people, like my mom and some random
friends being like, are data centers making my electricity bill go up? And I realized that there is not
an easy answer to that. There's not one simple answer. The answer is nuanced, and it really
depends on your perspective. As we'll come around to, I think globally speaking, the answer is yes,
But let's start with local, because in that context, I think the answer is generally no.
Because, you know, if you think about it, like, you know, naively, if you think about adding a new large electricity load to any utility system, any utility territory, it's going to have two impacts.
It's going to cost something to bring that new load online, to interconnect it, to serve it with new generation, to do whatever you need to do to do, to get the energy,
delivered to that large new load in your system. And then it's also going to have another impact,
which is going to consume a lot of energy over time. And if you think about the basic framework for
how utilities charge for their services, which is a highly regulated rate structure, regulated
at the federal level, regulated at the state level. If you are served by a cooperative or
municipal utility, it's even at the city or the sort of community level, right? But the basic
structure is always the same. The numerator is how much does it cost in aggregate to deliver energy
to all the customers across that utility service area? And the denominator is how many kilowatt hours
do you sell? So it's dollars per kilowatt hour. And there's all kinds of nuance and detail
and how that basic formula is, formula, is translated into everyone's rates, which are different
across different customer classes, residential, commercial, industrial.
But basically, how much does it cost an aggregate?
How many kilowatt hours are we selling an aggregate?
And again, naively, if you think about adding a data center to any utility service territory,
it's probably going to add more to the denominator of that equation than to the numerator.
Because chances are it's going to, there's, well, let me step back for a second.
it's probably going to add more to the denominator of that equation
than to the numerator of that equation.
And that was especially true, say, five years ago,
where in a lot of utility service territories,
there was some spare capacity in the system,
some headroom on the grid, right?
So that you didn't necessarily need to make lots of huge upgrades
in order to bring a new data center online.
Maybe you had enough generation capacity
to serve that new data center
with some mild transmission upgrades to, you know, interconnected to the grid,
but there was enough generation already,
or maybe you need to build a little bit of new generation to serve it,
but not to serve the entire thing.
But you're getting the full benefit of that data center's denominator effect
because you're bringing all these new kilowatt hours online.
So sort of that basic formula would suggest that in many cases,
you should think that bringing a new data center online
will reduce rates.
In reality, what we're seeing today, of course,
is that in most utility service territories,
it's not the case that there's a lot of headroom left on the grid.
There's no more headroom left in the grid.
There's no more spare capacity in most places,
which means that oftentimes you will have to build new power generation.
You will have to make some additional upgrades,
maybe build some significant new transmission line
or upgrades to major substations,
in which case the picture is less clear, right?
You're going to add a significant amount
to the numerator of the utility's basic cost equation.
You're also adding a lot to the denominator.
It's a question mark, an empirical question mark,
whether in that instance, a data center should make everyone's rates
go up or down or stay neutral.
But, you know, that basic equation is not, it's a useful formula and a useful framework,
but in reality, it's not how rates are always set.
Data centers are extraordinarily large customers in most service territories.
You know, for a mid-sized utility, most of the kind of hundreds of megawatts scale data centers we're seeing today would add 10% 20%
percent, 30 percent or more, if we're getting up to gigascale data centers, to the utility's total
load. So they're extraordinary customers, and so the utilities are, I think, understandably and
correctly taking extraordinary care to make sure that the specific tariffs that they work out with
these data center customers and the specific, you know, other negotiated agreements they work out
with those customers are ensuring that the denominator effect is bigger,
that the data center is paying their fair share,
and oftentimes more than their fair share with a buffer,
relative to the kilowatt hours they add to the system.
So in fact, I think the utilities and the data centers are doing a pretty good job
at the local level, like when any given new data center comes to town,
at making sure that that data center is not going to raise your rates,
and in fact should lower your rates a bit, right?
Yeah, I mean, I think, first of all, we're starting to see now,
it's a little bit more anecdotal because I think it's just emergent,
but we're now seeing the first, like, announcements from utilities
of going to regulators and requesting rate decreases
as a result of large loads in their territory.
We've seen a few of those now.
I think we're going to see more.
I think the reason for that is that, you know,
You know, you describe the fundamental equation.
I think the key thing to understand is that the numerator, the cost to serve, it's really
in this context, it's a net cost to serve, right?
It's a question of how much does the utility need to invest net of what they're getting
out of the tariff from the data center?
And so I think the phases that we've gone through, like I think we're in phase three now,
maybe, of how this is all played out.
phase one is what you described, which is like there's a period when data centers were already, we were, you know, we were in cloud world and Bitcoin world, and there were data centers, and they were getting built, and there was headroom on the grid, and the denominator effect was like clear, and it was fine. Nobody was really upset about it. In fact, if anything, utilities were like creating incentives. Utilities in states, right? Sales tax exemptions and so on. Everybody was creating incentives for data centers. Then the AI boom comes, and data centers start flooding.
all over the country in utility territories.
And there was a period of time when, I think, broadly speaking,
utilities were not, they had not yet adapted to what they could command,
or maybe they couldn't command it yet, I don't know.
But either way, it hadn't changed that much what they were commanding in terms of tariffs
and bring their own capacity and all these things.
And so then there was this period in between when, like, yeah, I think the evidence was
sort of mixed, and it wasn't entirely clear at the local level where data centers
increasing bills or decreasing bills.
And now I think we're entering phase three
where utilities have wizened up to this entirely.
It is very clear that they hold all the cards
and everybody is so desperate to get capacity,
they'll kind of do whatever they can.
And so it's becoming standard and commonplace
to ensure that when the announcement goes out
that the utility has agreed to interconnect a new data center
alongside that announcement,
they can say, and this is at a bare minimum not going to increase rates and oftentimes now
going to reduce rates.
So I think it is becoming increasingly now that like hyperscale data centers at the local level
because of how the market dynamics are playing out are mostly going to keep flat or decrease rates
locally.
I agree, and I would say trending towards are going to have to decrease rates locally.
You're going to have to be able to say that because of this surge in public opposition to data center development that we've seen, particularly at the local level.
And I thought it was really telling there was a Gallup poll recently, which is one of the many polls that is showing that the public has turned pretty dramatically against data centers.
And that much is very clear at this point that's kind of like very widely reported on.
But what I thought was interesting is if you dig one level.
deeper into the responses in this Gallup poll, and you ask people, okay, why do you? People
who are averse to having a data center built anywhere near them, you ask why. The number one reason
is water consumption, which was kind of surprising to me. And it's actually, as far as I understand
that this is not an area of expertise for me, but I think it's probably a bit of a red herring
in most places outside of very sort of water restricted areas. But the number two and the number
three reason people's site have to do with energy use. The number two reason is basically like
it's going to use too much energy, and the number three reason is it's going to make my electricity
prices go up. So for better or for worse, the utilities and the data center operators are
pretty much tied hand in hand in terms of public perception here. And I think you're going to
have to make the deal sweet enough for people. You're going to have to make, it really behooves
both of those parties to be able to say
with great confidence
this is going to reduce your electricity bill
at least
relative to the baseline without
this data center in the area.
I should say there's good
data on this already.
There was a study that EPRI put out
pretty recently, I think just a couple months
ago, and
they were just
looking at different utility
territories across the country and the
impact of data center
load on
rates in those territories.
And even if you're not
controlling for any kind of
correlated variables that might bias the
analysis, just kind of like looking
at that in a very, again,
naive way,
you would see that there's basically no correlation
between more data centers and
higher electricity prices. And when you
do control for other variables
that might bias the analysis,
Epre found that basically, on average,
data centers are lowering customer bills a little bit already.
So we are seeing it's not a major impact.
It's something like 6%.
But data centers have had a beneficial impact for consumers up to this point.
I think you sort of alluded to something that I think is a really key point to,
which we'll talk about in the context of part two of your thesis on the global side.
but it's basically like, are data centers locally reducing rates in an absolute sense
or reducing rates in a relative sense, relative to what they otherwise would have been?
Because I've done my own little informal survey of friends and family and spouse and ask them.
And I mean, I've gotten a remarkably negative set of feedback from people about data centers for,
and basically the rank order from that gellarrow.
survey that you said is basically what I've heard, too. It's like water first and then energy
and then maybe some other stuff, pollution and, you know, blight or whatever. But mostly it's
those things. But there's a component of it that I picked up too, which is like, you know,
I'll follow up and ask the question of like, okay, but what if it were going, what if the utility
told you it's actually going to reduce rates or something like that? And, you know, what if I told
that the water consumption was insignificant.
And there's an additional layer to it, which is like,
they just don't trust any of the players who are telling them these things,
because it's either going to be the data center companies or the utility
or maybe the politicians.
And like, there's not a lot of trust in many cases for any of those.
And so there is this risk that on a relative basis,
data centers do reduce rates,
but rates still go up for reasons we're going to talk about in just a minute.
and consumers, you know, you just don't get the credit for it.
I hadn't actually thought about that, but that is obviously, like, yes, absolutely.
That's a risk because if you think at a global level, as we'll talk about,
data centers are absolutely going to be pushing up rates and other factors, right,
in the supply chain.
Rates are going up for most people in most places, I think, in the years to come.
then
they won't,
most people don't think about the counterfactual,
right?
And if they've heard
that this data center was supposed to make
their utility bill go down and their utility
bill does not go down,
yeah, clearly that
will just compound the problem of
lack of trust here. Now there are some
places where I think it will go down in an absolute
sense. And that's what some of these
recent announcements that we've seen
of like, we actually intend to
reduce customers bills by
average of X dollars per month.
And maybe people will notice that.
So it's going to be situation specific.
But, okay, so I think we've made the core point
of like, generally speed,
the direction of travel right now is if a large load
shows up in your utility territory,
probably it's going to have a zero to negative effect
on your electricity bill currently.
However, let's talk about the global perspective then.
What would you say is the impact of data centers?
We'll start with just data centers, and we can broaden it out,
but what is the impact of data centers on electricity prices in a global sense?
So at a global level, data centers are one factor among many,
but I'd say they're the biggest factor that is causing this global growth in demand for electricity.
which is happening so quickly now, especially because of data centers
and the urgency with which data center developers want to bring them online,
it's happening so quickly that it kind of counts as like a demand shock in a macroeconomic sense,
at least within this sector, right?
There's a demand shock and supply chains,
like basically every step in the supply chain for equipment for the electricity system
to deploying that equipment and getting it online
and hooking everything up
is bottlenecked
and cannot keep up with demand.
And because of that,
we're seeing, I think, systemic pressure
on prices for almost everything
in the supply chain that eventually it takes
to get kilowatt hours delivered to your home.
So this is the big problem, basically.
We're in this period of surging demand
electric system operators, utilities need to build a lot of new infrastructure.
They also need to keep up with the existing infrastructure,
a lot of which is beginning to reach the end of its depreciation cycle,
its useful life, right?
I thought it was a really interesting stat from the Edison Electric Institute.
Basically two-thirds of all utility spending across the board in the United States
is just for maintenance and hardening of the grid.
keeping up with basic maintenance, like keeping the system running, swapping out new equipment
for broken old down equipment, and the most mission-critical hardening things for areas that are
being hit by intense storms or wildfire risk and stuff like that.
Like sort of two-thirds of the expenditures they're making today across utilities are non-negotiable
and it has nothing to do with growth, right?
All that stuff would be happening, even if the data.
data center, boom, we're not happening. And so all that stuff is getting more expensive too because of the impact that data center growth is having on the supply chain. So two-thirds of their spend is going to be higher because of what's happening at a global level. In addition, we talked about how today there's no more headroom in most parts of the electricity system. Like there's no spare capacity. Any new capacity you build is going to be.
much more expensive than the capacity that we built 20 years ago
because of this demand shock and supply chain crunch.
And keep in mind, a lot of the capacity that we already have
has been at least partially or maybe fully depreciated over decades.
And so we're adding a bunch new cost to the system
at a global level that there's very little,
but basically nothing, that you're a friendly,
utility or data center developer can do about,
no matter what kind of special tariff or agreement they negotiate for that individual facility.
All right, let's be a little more specific.
Like, name some of the things that have become more expensive and how much more expensive it become?
It's hard to not name things that have become more expensive, but like every component of the grid, conductor is like twice as expensive.
So like basic aluminum steel reinforced conductor.
Transformers are two plus times more expensive.
Switch gear is two times more expensive.
Gas power plants are two to three times more expensive.
Renewables have gotten more expensive to interconnect to the grid.
And by the way, like, renewables have been one of the really positive trends
for electricity prices in the United States over the past 10 years,
because there have been many places in the country,
especially when you consider the tax credits
that renewables have benefited from,
where the levelized cost of energy,
the PPA price that you would pay for wind or solar power,
is lower than the average cost of fossil fuel generation
that that energy is displacing.
And so that's been a trend that has been very much
in favor of lower electricity prices in the past 10 years.
Now those tax credits over the next four or five years
will be expiring. And in addition, renewables are facing more interconnection costs. There's been
some issues in the renewable supply chain as well, which have caused costs to increase. So we're
seeing much higher costs for renewables, much higher cost for gas. Basically, every part of the system
has gotten a lot more expensive. Oh, labor, that's something I think you and I've talked about
on the pod before too, right? Like, everything is more expensive for adding anything to the power
system right now. Right. And then in addition to that, you've said this a couple times, like,
it's not the only factor. There are other factors, too, that are like an inflationary pressure
on electricity prices. And so we should acknowledge those. And those are, those are market specific
to some extent. But in the United States, just to like some examples of things that I think about as
risking inflationary pressure on electricity prices. We have tariffs on various things.
I mean, that also has affected the cost of renewables and batteries. We have, you have, you know,
We have LNG exports that on balance should increase the cost of natural gas in the United States.
We have general inflation and cost of capital.
I mean, there's like a bunch of stuff that is totally orthogonal to the rest of this,
but also just like adds to the otherwise inflationary pressure on electricity.
Yeah, I'm especially worried actually now about that macroeconomic pressure, right?
I mean, we seem to be moving into a higher interest rate environment in general, certainly in kind of global capital markets.
And the power system is a big capital expenditure for society that we make sort of generationally.
And it would be really great to have been making that investment at the scale we're making it today 10 years ago when money was so much cheaper.
Peak temperatures don't have to mean peak prices.
When summer heat drives demand up, utilities need flexible capacity they can call on in minutes while keeping customer rates down.
That capacity starts in customers' homes.
Energy hubs, Edgeterms platform aggregates thermostats, batteries, and EVs into VPPs that grid operators can dispatch with the same confidence as a traditional power plant,
with real-time performance, accurate forecasting, and end-to-end verification that holds up from the control
room to the living room. This peak season, more than 170 utilities are turning everyday devices
into the grid's most responsive asset, exactly when the grid needs it most. Find out what utilities
expect from a VPP partner at energy hub.com. When building a data center, the two hardest
problems aren't technical. They're speed to power and earning community support. And that's where
Bloom Energy comes in. Bloom's fuel cell platforms deliver fast, reliable electricity without combustion. For local
communities, installing a bloom system means lower emissions, minimal water use, and quieter
operations compared to conventional solutions. The track record backs it up. For over 25 years,
hospitals, universities, and utilities have trusted Bloom Energy to power communities where safety
is top of mind. If you're building infrastructure where delays are not an option and community
support is key, your power choices matter. Visit bloomenergy.com to learn more or the link in the show
notes. When it comes to energy, the best solutions don't start with a product. They start with
understanding your business. NG works with customers to understand their goals, operations,
and challenges before building solutions to their energy needs. Because while NG knows energy,
no one knows your business like you. And because the work doesn't stop once the paperwork is
signed, NG helps turn energy plans into outcomes. Learn more at NG Resources.com. That's E-N-G-I-E-E.
NG Resources.com or click the link in the show notes.
I think back to our mutual friend, Matt Bullard,
had this like one of his, a great chart in his annual massive deck
that went back to, I don't know, the 1950s or something like that.
And it showed the share of GDP per capita,
so basically the share of any given average person's wallet
that is spent on electricity each year over time
versus the share that is spent on,
I think, oil or gasoline, some version of that.
And the electricity share was remarkably stable.
It's like the same amount of our collective income
is spent on electricity for the past 70 years,
whereas it's actually pretty volatile
when it comes to oil and gas,
well and gasoline, I should say.
and we'll see if that changes.
But here's the thing from, okay, so this gets to the crux of your analysis, right?
At the local level, data centers seem to unbalance probably decrease electricity prices currently.
And at the macro level, they are definitely a factor contributing to an increase in electricity prices.
So the logical thing then would be we should all want as many data centers in our utility territory is possible.
Right?
Like, that's actually the correct...
In this specific context, that's the right way to think about it, I think.
Yeah, if we're in a data center version of the prisoner's dilemma of sorts, absolutely.
Like, get it all to my territory to lower my electricity bill, for sure.
Yeah, and make sure that, you know, my utility negotiates the tariff well,
and they bring their own capacity or pay for their own capacity, either way, you know?
Yeah, I mean, that's why I...
I mean, this is veering off course a little bit, but I...
I do wonder how much of the public perception and public acceptance problem is really related to energy use and electricity prices.
People say those are the things that they care most about to a Gallup pollster.
But as you noted, there seems to be something a lot more deep-seated here for a lot of people around trust of the various parties involved,
probably around their feelings toward AI more broadly.
And so I don't know for sure if there's anything, like if this, if you really focused on electricity rates and data center operators and utilities came to these incredibly generous agreements for the other rate payers in a territory, like whether that would really move the needle or not.
That's a question mark, a hypothesis that we need to test.
There's an extreme version, which I don't know if you've seen this.
So Vivek, Ramswami, former presidential candidate.
is running for, I think, governor of Ohio now.
And his platform is that data centers that come into,
I guess, a utility territory in Ohio should result in free electricity for the local residents.
Now, set aside that that's not how electricity tariffs work.
Like, you don't, like, you know, give a particular municipality a different rate
from a different municipality in the same territory.
But conceptually, he's like, they should just make electricity,
free for those people. I haven't actually run the math on like how much extra. But the extreme
version of this is something like that, right? Like how much willingness to pay to these
hyperscale data center operators have and how much can they? There is a point where maybe
it's not free, but if they reduce everybody's bill by 20%, that's going to be noticeable.
Depending on the size of the utility territory, that could be completely impossible or not, right?
Yeah, I wrote a post, like, maybe a year and a half, two years ago, it was called, for AI, energy is everything and energy is nothing.
And it was all about how, like, if you're trying to build a data center, an AI data center, computing of whatever kind, you obviously need power.
Like, you need power capacity.
You need to be hooked up to the grid or hooked up to something that can, like, you need the capacity to get started.
But then once you start running, energy is a pretty small share.
of the total cost of goods sold for that data center, right?
It's something like 5 to 10% of the total cost.
And so, yeah, you could, you know, if...
What if you double it?
What if you double it?
What if you triple it?
How much impact could that have on the rates for the rest of the community,
the rate payers in the system?
I think that would start to become pretty meaningful.
So we'll see.
we'll see if that's where this has to go in order to secure community buy-in.
And just following up on another point you made that's kind of related on the share of
global GDP, or sorry, share of national GDP in the U.S., the share of our wallets,
effectively, of all of our labor that is going to energy and electricity specifically.
Completely, that chart from Nat's deck is very telling.
It has been pretty consistent and actually remarkably low in the scheme of things for decades and decades.
Electricity in particular, I was looking at some data going back just to 2010.
For the average consumer, it's been between 1 and 1.5% of average personal income over that period and declining a little bit over that period since 2010 so far.
And like that seems like a very small price to pay for most of us.
But I will say like where this really matters is for lower income consumers,
fixed income consumers for whom electricity could easily be 5, 10%, maybe even more of their wallet.
And so, you know, for those people, if you were able to reduce the cost of power by,
you know, via getting a new data center in your territory by, I don't know, 30% or something.
something, you're saving up a meaningful amount of their annual budget for them to spend on other
good stuff that they like. So I think it could matter. I would love to see one, maybe the right,
maybe this should be a muni or something who does this, or very small IOU, because the only way
this would actually work. But I'd love like, I'd love like some very small utility to issue basically
an open call and say, we've got a site in our territory. We'll put a gigawatt scale data center
here. So now you're in like pretty rarefied air. We'll put a gigawatt scale data center here.
and will interconnect it fast,
what you have to commit to
is a rate that we've calculated
would be sufficient to lower customer,
all customer bills in our territory by 25%.
I don't know what the number is.
And then just, like, see if anybody goes for it.
Yeah, I would love to see this experiment as well.
Let's see if anyone listens to this
and decides to give it a shot.
Okay, so then the last question, obviously,
is, like, what to do about this
in a general sense?
I mean, the, and again, this is more what to do about the global problem of all this.
Because we're not headed into a world anytime soon, in my opinion, where these supply chains suddenly become really loose.
Like, they're tight, and they're going to stay tight for a little while.
I don't know what the ceiling is going to be on, like, gas turbine prices, right?
But, you know, every data point that I hear currently is, like, a new high number that I had never heard before, right?
some CCGT getting itself for like $4,000 a kill a lot or whatever.
Yeah, I was going to say, I think I just saw one come across my desk at like $3,600.
So that would be, I think that's one of the higher price points I've seen.
But yes, yeah, it seems to keep going up.
So what can we do about that, if anything?
I mean, you know, the problem, as I said, is everything.
Everything costs more and we need to build more of everything.
So in a way, it's a cop-out answer, but the answer is do everything.
I mean, there's such a panoply of potential solutions, things that can be done in the supply chain
and buy electric utilities and by data centers that have theoretical benefits for reducing the total cost of deploying all this stuff.
It's hard to figure out where to start.
It's funny at energy impact partners where we both work.
We thought it would be fun to put together a deck full of solutions on things that can improve affordability from our portfolio of companies that we've invested in.
And we quickly, we thought at first that we'd get to like maybe 10, 15, 20 companies and that'd be it.
But the more we started putting this together, we realized that like, well, we're investing in things in general that have a claim to for the most part be
cheaper, faster, better. And so, like, everything can make a difference. But, you know, there's a few
areas that I, in particular, think this will cause more focus on. You know, this will raise the
profile of a few opportunities relative to a historical trend. One of which I'm crossing my
fingers, I'm sort of forever a believer, is energy efficiency. And that can come sort of just
natively from consumers who start to see higher electricity rates and decide now is the time
to invest in that next more efficient piece of equipment or whatever it is, you know,
insulation for their home just because the economics pencil in a way they didn't before.
Or it could come more from utilities who for a long time now have looked at these energy
efficiency programs as sort of like a regulatory requirement, something we, you know,
we put in the back room, we've got to do it. We think it probably makes a difference over time,
but it's not something we can really plan on these efficiency dollars going to work.
Maybe this causes utilities to rethink energy efficiency, sort of bulk-kill-watt-hour savings
in a way that has to be more of a planning resource. So that's one place I'm hopeful
that higher prices will move the needle for.
Yeah, and I think a derivative of that also would be load flexibility.
which is a different means to the same end, right?
Conceptually, load flexibility is basically just a way
to get our collective demand for electricity
to better match the resources that we have on the grid
such that it's a lower cost to serve overall.
And so you could do it by lowering the total number
of kilowatt hours.
You could do it partially by shifting
when the kilowatt hours are consumed,
and that's what load flexibility is all about.
Load flexibility is less unloved, I guess,
than energy efficiency, so to speak.
So maybe it like, you know, it doesn't need the profile boosts quite as much, but I think it will
certainly be a beneficiary here.
Yeah, load flex, distributed batteries, that sort of thing, at least has been gotten a lot of
attention and has been sexy for people like you and me and a lot of the circles that we run in
who are who are DERR nerds and attend the Dervos conference every year.
But I think, you know, again, it's getting.
more attention from utilities, and again, not just as sort of like, oh, we got to do some demand
response because the regulator tells us every year we have to spend X dollars on demand response,
but to something that they should be planning on and planning for. And in some cases,
like procuring much more directly, you know, our portfolio company at EIP Spark Fund has been
out there promoting this model of, you know, distributed capacity resources, distributed
capacity procurement by utilities where a utility will go out and say, I want 300 megawatts of
load flex and batteries in these specific areas. And I'm willing to go pay for it. And I'll just
like, we'll pay for the batteries on customer properties in these places so long as the customer
agrees to sign up. So, and, you know, I think they're getting some traction with that. So, so, yeah,
the time is very different for distributed energy broadly. Right. And then, of course, as you
said, there are hundreds and hundreds of different things we can do. Like, every, every part of
the value chain has inflationary cost pressure, and thus there are ways to make every part of the
value chain, cheaper, conductors, generation, transmission, distribution, labor, hardware,
software, all sorts of stuff. Yeah. I mean, you know, it's like the answer to high prices
is high prices, right? And to some extent, I think that that formula
is working out in the market.
Like, transformers are more expensive.
So we're seeing more companies that are trying to figure out ways of assembling a supply chain for
transformers, like one of our company's air energy, or alternatives, like solid state
transformers, like Karen Power is making.
So not to delittle those efforts.
Like, I'm glad those companies are out there, you know, taking really creative approaches
to building the equipment we need.
But I worry less about those steps in the supply chain
because there are companies out there responding to this market signal,
which is price.
Labor is one, you and I have talked about this a lot.
That moves slower.
It's harder to find and train people who can do the kind of work we need done
in field settings.
It takes at least a few years to train someone.
probably takes, I don't exactly know, to become like a master electrician, but well more than a few years.
And first you have to find people that are capable and want to do the work. I mean, that's one that
I worry more about in like a 10-year time frame. I think there's lots of reasons to worry about that
one. It's a more intractable problem. That said, I think it is a pretty small contributor to the
overall cost of electricity. Like the, you know, what is the portion of the cost of electricity that
that is electricians,
it's probably not that big, right?
So it's a big issue,
but in this context, it's probably not the biggest one.
You know, it may be like energy for data centers,
like it's everything and it's nothing.
You know, like it's not a huge contributor,
but if you can't find the electrician to plug your thing in
or if you can't find a line worker
or enough line workers to build the new substation,
then you got nothing.
So I think that's probably how,
how that dynamic will play out.
All right.
Well, it'll be interesting to have this conversation again in like a year or two when there's
more data from this third wave.
Right now, you know, you see announcements, but I think there's going to be like, fast forward
12 months.
There's going to be a bunch of new studies that'll come out with like good data on the direct
and the direct impact for sure in a local sense.
I haven't seen anybody actually tried to do like a comprehensive look at the macroeconomic
question, but maybe somebody will listen to this and do that because I think
it would be interesting as well.
Either way, we will see where it goes,
and I appreciate you coming on again.
Yeah, thanks for having me on show.
Andy Lubershane is a partner
in the head of research at EIP with me.
This show is a production of Latitude Media.
You can head over to Latitude Media.com
for links to today's topics.
This episode is produced by Max Savage-Levinson,
mixing and theme song by Sean Markwand,
Anne Bailey edits the video version of the show.
Stephen Lacey is our executive editor.
All of our episodes are on YouTube,
subscribe to Latitude Media for episodes of this show and Open Circuit.
You can find the audio version of this show anywhere you get your audio podcasts.
I'm Shale Khan, and this is Catalyst.
