Not sure if this particular project is also sponsored by taxpayers' money or not, though.
Not sure if this particular project is also sponsored by taxpayers' money or not, though.
Power prices will go up, since any growth will exceed the available power generation capacity. Power will become dirtier, since diesel generators will fill in when there is high demand. Then the community will spend a huge amount of money building out more capacity.
I think we will all soon see, communities sharing power infrastructure with massive-demand corporate customers will end badly for the communities.
The four planned data centers involved in this deal, after construction, will likely employ less than 1000 people.
I have no real evidence for this but I think a general principle of good governance is that the policy is agnostic to the industries which it affects and robust under any set of conditions, so for instance, the price that electric utilities charge should be enough to pay for expansions, either prospectively or retroactively (via loans secured before the construction, taken out against projected future revenue), rather than subsidizing the expansion with taxes collected by industries that won't be using the electricity, or exercising discretionary control over which types of industrial expansion are accommodated through investments in expanding the energy infrastructure.
Huge expansions of energy production have occurred in the past to meet growing demand for energy from then-emerging industries. And I'm not aware of any past campaigns to stop the various industries that needed energy on account of the allegation that their increase in energy usage would burden other sectors of society. I have concern that the treatment of AI compute facilities is based on public opinion rather than rule of law and consistent protection of private property rights.
I am not a regulator but that feels like something that needs new rules
My own cursory take on AI compute facilities is that they're mostly much better for the community than previous industries. They emit zero industrial pollution, and only require water for cooling and energy from any source. The water used can also be recycled. And even in the early designs that don't use recycled water, the water consumed is orders of magnitude less than agriculture.
On the downside, they produce fewer jobs, but they encourage and fund infrastructure upgrades in telecom links and power transmission, which has second-order benefits for the local economy.
And they consume very little government services, so the taxes they pay produce a much larger fiscal surplus for local governments.
They also allow for energy that would otherwise be uneconomical to harvest, to be economically harvested. Let's just take an example of a desert which has very little wildlife, and no major nearby populations. AI compute facilities can make it economical to harvest the sunlight in those regions and make economic use of it.
They don't create many permanent jobs on site, it's true, but they also don't consume many government services. So of all the industries, they produce the highest fiscal surplus for local governments. It's a net benefit to the community.
The community benefit is nowhere close and I'm not sure why you're trying to pretend it is.
This surplus is why the county with the highest concentration of data centers, which is Loudoun County, has been able to reduce its property taxes year over year. The property taxes the AI facilities pay is what enables that.
If you're in Finland and there are two possible uses for electricity production, let's say, either a steel plant or a datacentre. The steel plant will employ a bunch of people locally. A datacentre will employ a bunch of people in California.
So if you are to build a datacentre, the deal must necessarily be that the R&D for the models that are to run on it must happen locally. Otherwise there's no reason to give them the allocation over the steel plant.
But when ad-hoc deals are made anyway, then it is more important that principles like those have been applied than that everything is ideal.
More generally, the bias is to block development until safety/fairness issues are addressed, but it shouldn't be in my opinion, because that overlooks the risk of inaction.
When development is blocked, what that does is reduce visible risks. What it usually increases however is total risk. We are already under constant threat from deterioration: aging, depreciation and decay. Entropy is the default. Action is what pushes back against it.
We need to weigh any risks restriction prevents against the risks it leaves us less equipped to mitigate.
The trouble with this is that people frequently don't like the consequences of that.
For example, a lot of the costs of a grid connection are non-linear if not totally independent of the amount of power you use. When a tree falls on a power line and a crew has to show up and install a new pole, the cost of that has nothing to do with the average percent utilization of those wires. Likewise, a line that can deliver 100MW to a single customer costs more than one that can handle 100kW, but it doesn't cost anywhere near 1000 times as much or consume 1000 times more land etc.
The result of this is that the "works under any set of conditions" pricing for a grid connection would be a flat monthly fee for the capacity of the line totally independent of how much you use, and a line with 1000 times the capacity would only cost e.g. 10 times as much. But then a typical household electric bill would have a fixed charge of ~$100/mo for a grid connection regardless of how little electricity you use.
Likewise, if you have a high proportion of renewable generation in the grid then the price per kWh during daylight hours when there are clear skies would be essentially zero, but the price on a cold still night in winter would be oppressively high and anyone who failed to turn off their electric heat on that specific day would end up with a $5000 electric bill.
So in most places what happens instead is that the power company charges a fee per kWh which is used to pay line crews and other expenses that don't actually depend on usage and then have a much lower fixed connection charge. And charge a certain amount per kWh during days when supply is sufficient and then use the money to subsidize consumption during shortfalls, even though that actually raises total costs, because otherwise people would scream about prices hitting $500/kWh for a few hours every year or two.
But once you're doing those things, a customer that wants megawatts of power is reasonably going to object to that rate structure, because the few percent inefficiency those things induce is millions of dollars in their case. At which point people start complaining about subsidies, even though not doing those things would be the absence of subsidies.