Virtual Power Plant
Virtual Power Plant

Peak Shaving
Alleviate peak load usage on the grid, and obtain earnings through the peak shaving market.

Frequency Modulation
Solve the problem of short-term grid imbalance and frequency level fluctuations, respond to up and down regulation requests immediately and get incomes through FM markets.

Demand Response
Gain revenue by responding to the regulatory signals of system operators and the demand response market.

Consumption Rate of Wind and Solar Energy
Store excessive wind and solar energy when electricity demand is low. Relieve the pressure on power generation by releasing stored wind and solar energy when the power demand is high. It can effectively increase the consumption rate of renewable energy such as wind and solar, and reduce wind and solar curtailment.
Project Examples
NEU Project
Research on virtual power plant technology from the perspective of demand response.

● The virtual power plant has greatly stimulated the vitality of the market and achieved a high transaction rate and low waste rate on both the supply and demand sides, thus ensuring the interests of power generation entities with different economic characteristics while meeting the electricity demand of users. The actual absolute peak-valley difference was reduced from 14.2MW to 3.6MW, which can meet the trading effect of 147% of the absolute peak-valley difference and 100% of the standard deviation effect of load fluctuation, and the overall transaction effect is 61.8%.
● With the virtual power plant participating in the economic operation of the power grid and the low-carbon economy, the peak load of the virtual power plant is reduced by 10.1%, and the load regulation accuracy in the virtual power plant reaches 5.3% of the total capacity of the virtual power plant.


Jibei Virtual Power Plant Demonstration Project

the US Sandia National Laboratories Virtual Power Plant Demonstration Project



The development of virtual power plants in the United States is mainly based on demand response programs, taking into account the use of renewable energy, solving the problem that small-scale distributed power sources cannot participate in the electricity market, and has now become a new solution for load response and distributed power management.
By regulating the user-side energy storage equipment, the virtual power plant can charge from the grid during the low electricity price period at night and discharge it for users to use during the high electricity price period during the day, reducing the user's demand for purchasing electricity from the grid and reducing the cost of electricity.