Control Strategy of Energy Storage Participating in Secondary Frequency Regulation Based on Ultra-short-term Load Forecasting

Yiwei Cui, Xinran Li, Zhuangxi Tan, Ningning Zhu, Zhuoying Zhong, Ruo Li
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Abstract

In recent years, energy storage(ES) has been widely used as a new auxiliary power grid frequency regulation(FR) means, however, its capacity configuration is still subject to its cost. In order to improve the utilization rate of energy storage capacity, under the condition of energy storage participating in the secondary frequency regulation, the output depth of the energy storage can be adaptively adjusted according to its frequency regulation capability; Under the condition of recovery of energy storage's state of charge(SOC), the SOC reference value is dynamically adjusted based on the ultra-short-term load forecasting result, and the real-time operating state constraints of the power grid are taken into consideration to determine the actual self-recovering power of the energy storage. Finally, the control strategy of energy storage assisting power grid frequency regulation is proposed by synthetically analyzing the demand of power grid frequency regulation and the capability of energy storage frequency regulation, and the flow chart of realization is presented. The proposed strategy is verified by simulating the actual load disturbance scenario of power grid in MATLAB/simulink. And the results of the simulation show that the proposed strategy has good frequency regulation effects and improves the utilization of energy storage capacity.
基于超短期负荷预测的储能参与二次调频控制策略
近年来,储能作为一种新型的电网调频辅助手段得到了广泛的应用,但其容量配置仍受其成本的制约。为了提高储能容量的利用率,在储能参与二次调频的情况下,可根据其调频能力自适应调整储能的输出深度;在储能荷电状态(SOC)恢复条件下,根据超短期负荷预测结果动态调整荷电状态参考值,并考虑电网实时运行状态约束,确定储能实际自恢复功率。最后,在综合分析电网调频需求和储能调频能力的基础上,提出了储能辅助电网调频的控制策略,并给出了实现流程图。通过MATLAB/simulink仿真电网实际负荷扰动场景,验证了所提策略的有效性。仿真结果表明,该策略具有良好的频率调节效果,提高了储能容量的利用率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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