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Summer Outages Are Coming. Is Your Facility Prepared?

On-site microgrids provide facilities with reliable energy during extreme weather that threatens utility blackouts and price increases.

Bloomberg News, the Wall Street Journal — almost every week we see news articles warning of more summer outages than ever before. The U.S. is experiencing more outages than other industrialized nations. Meanwhile, heatwaves, droughts, and wildfires are only becoming more common. The energy transition is here, and it’s going to be a bumpy ride for the next 10-20 years.

At the same time, the grid is shifting towards more intermittent renewables and shutting down existing power plants, leaving utilities with a thin reserve margin. This leaves large power users exposed to the risk of extended brownouts or outages.

On-site microgrids ensure facilities have reliable, affordable power during peak events, regardless of the state of the grid.

Extreme Weather Increases the Risk of Utility Blackouts

Early May should be too early for a heatwave, even in Texas. But already this year, grid operators expecting 105° temperatures across the state were forced to issue a grid outage warning and take action to stave off rolling blackouts. Nonetheless, some outages occurred as warned. Texas reached an almost record high in energy demand while generators and transmission operators scrambled to complete repairs and weatherization of a rapidly decaying grid.

The state avoided most blackouts during the grid usage spike, but not all. For instance, the utility shut off some Austin area customers due to the high demand, which exceeded 71 GW ahead of the summer peak season (75 GW is the record summer demand). At the same time, electricity prices rose sharply, reaching triple the average near Houston.

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The Death Of Traditional Power Grids

The Death Of Traditional Power Grids

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The problem with centralized power grids is that they can be crippled at just one point of failure, leaving consumers vulnerable to outages. According to Mark Feasel of Schneider Electric, the cost of such outages for the U.S economy overall is $150 billion a year. An irritating inconvenience for domestic consumers, prolonged outages are expensive, damaging and potentially fatal to businesses of all scales. Insurance may not necessarily cover business that are forced to close due to power outages, just as it may not reimburse damage to property or stock. Given that the question of outages is likely to be when rather than if, it is no surprise that many businesses are looking to augment their power needs with backup systems. While for some that may simply be something like a backup generator, many more are utilising microgrids.

Put simply, a microgrid contains localised energy generation, distribution and in some cases, storage. Microgrids are generally used in discrete locations to provide all of the power needs of that site, but they also work in tandem with a centralized grid, augmenting or providing backup power to that supply.

The main benefits of microgrids are threefold; they are local, independent and intelligent. When energy is produced locally, the grid itself becomes more efficient. Delivering electricity form centralized grids leads to losses of between 8 and 15 percent. This locality also means that the site isn’t susceptible to power outages that affect the central grid. In such an event, the microgrid can take control of the delivery of power before there is any loss, eliminating blackouts and brownouts. The way it does this is by use of intelligent switching. A microgrid can monitor all aspects of the power system, and thereby intelligently switch between the local grid and the wider grid, depending on various factors. It can, for example, monitor price fluctuations and only draw from the main grid when prices are low, switching to local supply when they rise.

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