Economic Analysis of Peak Regulation of Fire Storage System Based on Northeast Electric Auxiliary Service Market

Haiji Zhao, Jingxiang Zhang, Jungang Yu, Xuezhu Jin, K. Hou, Chenyu An, Fei Xu, Junhui Li
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Abstract

With the proposal of "dual carbon" goal, the installed capacity of new energy is increasing rapidly, but the randomness and unpredictability of new energy affect the security of power grid. The stability of power grid requires the thermal power plant to carry out the task of peak regulation, but the thermal power plant to undertake the task of deep peak regulation is not high income, poor enthusiasm. Based on the operation rules of auxiliary service market in Northeast China, this paper studies the deep peak shaving task of energy storage system auxiliary thermal power plant. At the same time, the cost of all-vanadium flow battery was modeled and calculated, and the control strategy of charge and discharge limit of energy storage was adopted based on the depth peak shaving benchmark. The cost model and profit model of the energy storage system are constructed, and the economic analysis of the energy storage system in the combined fire storage system is carried out. Further explore the feasibility of energy storage system combined with thermal power plant peak regulation.
基于东北电力辅助服务市场的消防蓄峰系统调峰经济性分析
随着“双碳”目标的提出,新能源装机容量快速增长,但新能源的随机性和不可预测性影响了电网的安全性。电网的稳定需要火电厂开展调峰任务,但火电厂承担深调峰任务收益不高,积极性差。基于东北地区辅助服务市场运行规律,对储能系统辅助火电厂的深度调峰任务进行了研究。同时,对全钒液流电池的成本进行建模和计算,并采用基于深度调峰基准的储能充放电极限控制策略。构建了储能系统的成本模型和盈利模型,对火电联供系统中的储能系统进行了经济性分析。进一步探讨储能系统与火电厂调峰相结合的可行性。
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