Optimal Operating for Battery Energy Storage System in Both Energy Market and Regulation Market

Qianli Ma, Huaihua Zheng, Weijie Qian, Wei Wei
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Abstract

The power system faces more challenges with the development of human society. The battery energy storage system (BESS) can provide more flexibility to power systems and it can participate in multiple services in the power market to gain more profits. We focus on the problem that the BESS participating in both the energy and regulation markets. The BESS needs to determine how to respond to the automatic generation control (AGC) signal in the fine timescale and decide the capacity offering in the energy and regulation markets in the coarse timescale. We propose a two-timescale framework to solve this problem. We use an online method for regulation service while considering the battery's cycle life. And the simulation results of the regulation service are used to estimate the regulation revenue for each hour. Then stochastic dynamic programming (SDP) is used to calculate the capacity in the energy and regulation markets. We validate our method in the case study. It shows that the BESS can gain more profits by participating in both the energy and regulation markets.
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能源市场和监管市场下电池储能系统的最优运行
随着人类社会的发展,电力系统面临着越来越多的挑战。电池储能系统(BESS)可以为电力系统提供更大的灵活性,并且可以参与电力市场的多种服务以获得更多的利润。我们重点讨论了BESS同时参与能源和监管市场的问题。BESS需要在精细时间尺度下确定如何响应自动发电控制(AGC)信号,在粗时间尺度下确定能源和调节市场的容量供应。我们提出了一个双时间尺度框架来解决这个问题。考虑到电池的循环寿命,我们采用在线方式进行调节服务。并利用调节业务的仿真结果对每小时的调节收益进行估算。然后利用随机动态规划(SDP)计算能源市场和监管市场的容量。我们在案例研究中验证了我们的方法。结果表明,BESS通过同时参与能源市场和监管市场,可以获得更多的利润。
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