We have this in CA. I have Tesla batteries and they promote wanting me to enroll my batteries into a larger grid so their capacity can be used during higher load events.
I thought it was a novel idea when I heard about it.
I love this. It’s basically an edge cache for power, with an enormous amount of side benefits - smooths out solar power, smooths out the duck curve, and allows the grid to size closer to the average load and absorb the spikes at the edge, instead of cascading into the core.
There was an article earlier about the distribution challenges that come from large workload fluxes, too - tl;dr is the transmission lines get less efficient under higher load, so smoothing out the demand curve to the end user also raises the efficiency of the entire grid.
And as someone points out below - the proliferation of EVs also helps this, because they can act as a “deep” reservoir so the local residential batteries can be much smaller - more buffers than something expected to run the house for more than a couple hours, so that makes the whole setup even cheaper, depending on when and where the EVs are getting charged.
> I always wonder what happens when these things catch fire
If you're hoping someone will chime in to tell you they have magic firefighting foam inside them or something, I regret to inform you that what happens if it catches fire is exactly what one might naively expect from large lithium batteries.
I live just over the border in Massachusetts and we have something similar, called ConnectedSolutions. It is essentially the same kind of program except that the benefit is a 0% loan on the battery purchase. I have a 15kW battery that allows me to power the entire house overnight without drawing from the grid. When the power company wants to draw from my battery, they send me a notification through my battery’s app. I can opt out some fixed number of times, too. And, just as when my solar runs net negative, the power company pays me (in bill credits) whenever the virtual power plant draws power.
As a consumer, would you want the extra usage on your battery? Those extra cycles have to cause some additional degradation to the system, but I do not know how much.
> As a consumer, would you want the extra usage on your battery?
I feel like this is likely going to be a non-issue in practice. Because these batteries are rated to last at least 10 years either way. And by that time, the cost of replacement will be dramatically cheaper.
Net metering rates are pretty poor, so I would guess not much outside of extreme grid instability. Although, you then might want to selfishly hoard the juice for yourself.
We have this in CA. I have Tesla batteries and they promote wanting me to enroll my batteries into a larger grid so their capacity can be used during higher load events.
I thought it was a novel idea when I heard about it.
Tesla Electric customers report making as much as $150 a day: https://electrek.co/2023/07/05/tesla-electric-customers-repo...
I love this. It’s basically an edge cache for power, with an enormous amount of side benefits - smooths out solar power, smooths out the duck curve, and allows the grid to size closer to the average load and absorb the spikes at the edge, instead of cascading into the core.
There was an article earlier about the distribution challenges that come from large workload fluxes, too - tl;dr is the transmission lines get less efficient under higher load, so smoothing out the demand curve to the end user also raises the efficiency of the entire grid.
And as someone points out below - the proliferation of EVs also helps this, because they can act as a “deep” reservoir so the local residential batteries can be much smaller - more buffers than something expected to run the house for more than a couple hours, so that makes the whole setup even cheaper, depending on when and where the EVs are getting charged.
Yep, flatten the peak means you can spread the cost of the transmission grid over more electrons, lower the cost per unit of energy.
Note I have a Tesla powerwall at home. They installed it inside before I bought the house. I always wonder what happens when these things catch fire
> I always wonder what happens when these things catch fire
If you're hoping someone will chime in to tell you they have magic firefighting foam inside them or something, I regret to inform you that what happens if it catches fire is exactly what one might naively expect from large lithium batteries.
Britain learns about new product called Tesla Powerwall
also
Titanic Sinks Four Hours After Hitting Iceberg
Vermont continues to be a leader in anarchism and distribution of power (pun intended).
Distributed power storage/generation has been a thing for a century and it’s finally economical enough to be mainstream.
This was the whole pitch of the solarcity/tesla solar tiles + power wall a decade or more ago.
I live in Vermont. This is the first I've heard of this. But I like it!
I live just over the border in Massachusetts and we have something similar, called ConnectedSolutions. It is essentially the same kind of program except that the benefit is a 0% loan on the battery purchase. I have a 15kW battery that allows me to power the entire house overnight without drawing from the grid. When the power company wants to draw from my battery, they send me a notification through my battery’s app. I can opt out some fixed number of times, too. And, just as when my solar runs net negative, the power company pays me (in bill credits) whenever the virtual power plant draws power.
It would be nice to change the headline to "Vermont is replacing power plants with home batteries." Shorter and potentially saves a click.
I've seen a program funded by a utility that integrated batteries with air conditioners.
Or they could use EVs. Require cars to have V2X (Vehicle to Grid, Vehicle to Load) feature. EV batteries are humongous.
The down votes are because you use the word require. They’re never going to require it it would be opt in.
As a consumer, would you want the extra usage on your battery? Those extra cycles have to cause some additional degradation to the system, but I do not know how much.
> As a consumer, would you want the extra usage on your battery?
I feel like this is likely going to be a non-issue in practice. Because these batteries are rated to last at least 10 years either way. And by that time, the cost of replacement will be dramatically cheaper.
How much would I get paid?
Net metering rates are pretty poor, so I would guess not much outside of extreme grid instability. Although, you then might want to selfishly hoard the juice for yourself.
It would not be selfish to run your home off the car battery during peak rates and therefore cutting peak demand on the grid. Everyone wins.
Do any of the EVs sold in the US support Vehicle to Grid?
Lightnings do (well before they were discontinued)
But given they are NMC chemistry, you probably wouldn't want to cycle them a lot for the grid (or just your home).