Energy Storage Science and Technology ›› 2020, Vol. 9 ›› Issue (6): 1897-1904.doi: 10.19799/j.cnki.2095-4239.2020.0088

• Energy Storage System and Engineering • Previous Articles     Next Articles

Simulation analysis of the northwest power grid energy storage independently participating in peak regulation market

Chen XUE1(), Jing REN1, Xiaodong ZHANG1, Peng WANG1, Xinyu MENG2, Ying YANG2()   

  1. 1.Northwest Branch of State Grid Corporation of China, Xi'an 710048, Shaanxi, China
    2.Beijing Tsintergy Technology Corporation, Beijing 100080, China
  • Received:2020-03-01 Revised:2020-04-12 Online:2020-11-05 Published:2020-10-28
  • Contact: Ying YANG E-mail:1275953780@qq.com;18729013387@163.com

Abstract:

In this study, the transaction mode of the energy storage independently participating in the grid peak shaving is sorted out and a simulation is used to analyze the dispatching operation and market income of the energy storage independently participating in the peak shaving market scenario to promote electricity storage energy to actively participate in the grid peak shaving under the background of the peak shaving auxiliary service market being liberalized to electricity storage. Considering that the energy storage lacks bidding experience in the early market stages, we use herein the principle of more energy being absorbed from the grid and higher energy storage quotations to formulate a segmented quotation strategy for it. Combined with the prediction of the energy storage charging and discharging behavior, we construct a declaration model for the energy storage to participate in the peak shaving market. Based on the peak shaving demand of the power grid on the next day and considering the peak shaving quotation information of the energy storage and thermal power, the auction clearing model of the peak shaving market is constructed such that the power dispatching agency can call the peak shaving resources with the minimum system shaving cost as the goal. The relationship between the market marginal clearing price and the winning bid power of each market member is also analyzed. In an actual dispatch operation, the energy storage can participate in the electrical energy market through discharge to obtain electrical energy gains. To optimize the discharge behavior to maximize market profitability, a real-time energy storage optimization scheduling model is constructed based on the real-time charge-discharge status of the energy storage after the peak shaving market clearance and electricity price fluctuation and considering the battery consumption costs. The usage of a real-coded genetic algorithm is proposed to solve the real-time optimal scheduling model of energy storage. Taking the energy storage built in the metering outlet of wind farms and photovoltaic power plants as an example, we use the abovementioned model to simulate and analyze the energy storage independently participating in peak shaving of the power grid based on the actual operating data of a power grid in Northwest China. The results show that participating in the peak regulation market for energy storage can reduce the peak regulation cost of the power grid and increase its own profit through market revenue compensation to achieve expected economic benefits. This study provides a certain theoretical basis for promoting energy storage to independently participate in the peak shaving auxiliary service market.

Key words: independent energy storage, peak regulation of power grid, Northwest power grid, bid clearance, optimal dispatching

CLC Number: