Energy storage technology can play a role in all aspects of the power system

There are many energy storage technologies in the world that can provide a variety of services. These technologies include Supercapacitors, SMES, Lead-Acid, Li-Ion, NaS, Redox Flow, Flywheels, CAES, PumpedHydro and the like. These different technologies can provide diversified power supply (from kW to GW level) and power supply time (from second to hour), UPS system (uninterruptible power supply system), peak load shifting power distribution system and large Capacity management system, power and other three levels to be applied.

In terms of providing high-volume energy services, energy storage technologies can significantly increase grid capacity and enable power operators to monetize peak-valley electricity spreads. In addition, energy storage technology can also provide a number of auxiliary service functions for power transmission infrastructure, power distribution infrastructure, and user energy management, such as: supplementing the landscape system with spinning reserve capacity, black start-up, and regulatory compliance.

Energy storage technology in all aspects of the power system can play a role.

First, with the power generation side with the traditional power generation technology to enhance clean energy and network integration rate. On the power generation side, the large-capacity energy storage system can be used as an auxiliary service facility for power plants to stabilize and stabilize the unstable power sources such as solar energy and wind power.

Second, in the transmission and distribution sector, energy storage technology can be used in substations to play the role of peak load shifting. The application of this link is becoming increasingly important in the United States. Energy storage technology can be used as a substation in the distribution network technology upgrades, postpone the upgrading of the grid, reduce costs.

Third, in the consumption process, there are applications of energy storage technologies before "the meter" and "after the meter". In the case of "pre-meter", grid companies are actively investing in energy storage facilities on the east and west coasts of the United States, especially in the East Coast. Because these areas are vulnerable to hurricanes, energy storage facilities make the grid more resilient and more stable against hurricanes. After the "meter", the energy storage facility serves the user, such as Tesla's charging wall. In some parts of the United States, charging electric vehicles at specific times of the day helps peak peaking in the grid, with some payback. In addition to California, states such as Illinois, New York, New Jersey, and Texas also set good incentives to encourage consumers to set up storage or self-generating facilities after the meter.

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