佛蒙特州用家用电池组建虚拟电厂,取代传统发电厂
佛蒙特州用家用电池取代发电厂
佛蒙特州最大公用事业公司 Green Mountain Power(GMP)通过家用电池租赁计划,将超过 5,500 户家庭的电池聚合为虚拟电厂,已成为该州最大电力来源。
17 hours ago
Jack Carroll

BBC/ Serenity Strull
Spread across thousands of ordinary homes, this "power plant" has become Vermont's largest power source. It's protecting owners from outages and providing cheaper, cleaner energy.
"I don't mind being cold… but I just want my coffee in the morning and I want to be able to watch my news," says Bladyka, who lives in the rural town of Springfield in eastern Vermont with her husband Andy and her dog.
Bladyka became so fed up with the frequent power outages that in 2024 she was on the verge of buying a gas generator, as many of her neighbours had already done. But the electrician she hired to install it told her about a programme providing a compelling alternative.
Run by Vermont's largest utility, Green Mountain Power (GMP), the scheme installs two batteries in participants' home for $55 (£41) a month over a 10-year lease agreement. After doing some research, Bladyka and her husband decided it was a better option than the $12,000 (£9,000) cost of the generator they had planned to buy. They have not lost power a single time since the system was installed in 2024.
I'd like to say I did it for the environment, but I did it for myself. But I don't mind helping – Pollyanna Bladyka
More than 5,500 people in Vermont have similar home battery systems. As well as providing individual homes energy security during power outages, these batteries form the backbone of a new kind of system known as a virtual power plant that mimics the resources of a traditional power plant.
Through GMP's programme, its virtual power plant has quietly become Vermont's biggest source of power. Now, the state is testing how far this "hidden" form of power can go.
A power cut safeguard
For Bladyka, avoiding outages was the main reason she got the battery. "I'd like to say I did it for the environment, but I did it for myself," she tells me on a visit to her home in May 2026. "But I don't mind helping."
She describes previously waking up without power multiple times per year and not being able to go about her morning routine, with storms the most frequent cause, she says.
Virtual power plants can give a huge advantage over traditional systems when it comes to resilience against power outages.
Rise of the virtual plant
Virtual power plants are an aggregation of thousands (or even millions) of consumer devices into one orchestrated system that fits into the wider grid like a traditional power plant. Everything from home batteries and rooftop solar to smart thermostats and even EV batteries can be incorporated.
This system is coordinated to reduce demand on the grid – replacing the need to build extra fossil fuel-powered plants.
The concept has been around for decades, but has gained popularity in recent years as energy demand has risen and more distributed energy resources like rooftop solar have been added to the grid. Virtual power plants are now being built everywhere from Germany to China.
Given the state's rural nature and extreme cold in the winter, any kind of prolonged outage can be a matter of life-and-death if a customer does not have backup power – as it was during Texas' grid failure in 2021.
Now, though, power cuts are not a worry, says Bladyka – her battery should be able to power her house for two days, so long as electricity usage on things like dishwashing and laundry is kept to a minimum.
Megan Browning, who lives in northern Vermont with her family, has had two home batteries through the GMP programme as well as rooftop solar for around a year and has not lost power since. When a recent severe windstorm knocked down a power line near her home, she says, many houses in her neighbourhood lost power, but she "didn't even notice a flicker".
Others in Vermont have likewise decided that enough is enough when it comes to outages. GMP saw a surge of enrolments in the battery lease programme in 2023, when state regulators lifted a cap on it. Enrolment has continued to grow steadily ever since, it adds, with over 2,500 people enrolled since 2023.
GMP, which serves over 75% of Vermont, has a goal of eliminating all power outages by 2030. The battery programme plays a strong role in its plan, alongside other measures like undergrounding power lines.

Megan Browning
Power plant of the future
Several virtual power plants have emerged in the US in recent years as people catch on to their promise, says Kate Peters, a virtual power plant expert at Boston-based consultancy The Brattle Group.
But GMP's programme, which began as a pilot in 2017, may be one of the largest battery programmes in the US, says Peters.
The company can tap into Bladyka's batteries (and everyone else in the programme's) whenever needed, though the customer always retains some reserve power for themselves, especially during outages. It links these batteries in with an array of other resources including EV batteries, commercial demand response and a handful of utility-scale batteries.
Virtual power plants themselves don't actually produce power, though the solar panels tapped into it do (around 50% of the houses in its programme with home batteries also have solar panels, GMP says). Instead, they use software to manage and conserve energy in more intelligent ways, making what we have already go further – especially at the times the grid needs it the most.
Many experts now view such systems as a power plant – and by extension electric grid – of the future. They are innovative, resilient and more efficient than the traditional way utilities have supplied power, says Mari McClure, the chief executive of GMP.
"We believe in a two-way grid," she told me on a visit to the company's headquarters in May 2026. "With technology nowadays, we can create a distributed, decentralised model that's much more affordable and much safer. Customers really become consumers and producers."
Peak alternative
GMP similarly used to rely on oil, diesel and natural gas peaker plants to meet peak demand. Now the company's virtual power plant has effectively replaced them, says McClure. "We've been slowly able to decommission those as they've become end-of-life," she says. (Four peaking plants still run very occasionally if the regional New England grid operator calls on them, GMP says, though it hopes to close them all soon.)
"A virtual power plant is a way for a utility to pay people to provide some of the services that they usually pay big companies to provide for the grid," says Ben Hertz-Shargel, president of the New Jersey Board of Public Utilities and an expert on distributed energy sources.
Besides outage prevention, this lower cost is arguably the biggest benefit to customers. GMP's virtual power plant saved customers $11m (£8m) last year, the company told the BBC. The US Department of Energy found these plants could save the US over $10bn (£7.4bn) annually by 2030.
"When we look at what's the most impactful thing we can do to really maximise the grid and take it to the next level, the answer [always] comes back to virtual power plants," says McClure.

Pollyanna Bladyka
People's energy
Virtual power plants still face barriers in the US. The most significant is a "backwards financial incentive structure" that dissuades utilities from using them, says Jen Downing, a former US Department of Energy official and lead author of its 2023 virtual power plant report.
"Utilities don't have much incentive to harness demand flexibility because they make more money if they just build stuff," she says. "That's probably the number one issue nationally," she adds, though noting it's not the case for every utility.
The tide may finally be turning in the US, however, according to Downing, with states like Massachusetts, Illinois and New Jersey pushing utilities to procure capacity from virtual power plants in an effort to bring down energy costs. States and tech companies are now also looking to them as a way to make room on the grid for data centres.
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In the coming years, GMP aims to offer all its almost 300,000 customers energy storage if they want it, says McClure, with ambitions to more than double the size of its virtual power plant by 2034.
It also hopes to expand its resource base, plugging in the thousands of EV batteries in Vermont, for example, to provide a significant distributed resource – a concept known as "vehicle-to-grid".
Since the storage capacity of EV batteries is so large, this could be a potential gamechanger for virtual power plants everywhere. It remains to be seen whether that will happen, though, says Downing.
"If you look at the total storage capacity of EV batteries, it's enormous, but I don't think it's really cost-effective today for most consumer EVs," she says.
McClure has experienced its potential first hand: during one outage, she powered her rural home for five days with the battery from her electric Ford F-150 Lightning truck, she says.
Whichever technologies end up powering virtual power plants, they're likely to involve local communities more than traditional energy systems have, says Hertz-Shargel. People working in large groups, he says, can be "as big as a power plant".
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