引用本文:马静,沈玉明,荣秀婷,张辉,凌孺,杨贺钧,时瑞廷.考虑储能用户与新能源双边交易调峰服务的电力系统联合运营模式[J].电力自动化设备,2023,43(1):
MA Jing,SHEN Yuming,RONG Xiuting,ZHANG Hui,LING Ru,YANG Hejun,SHI Ruiting.Joint operation mode of power system considering bilateral peak regulation service transaction between energy storage users and new energy[J].Electric Power Automation Equipment,2023,43(1):
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考虑储能用户与新能源双边交易调峰服务的电力系统联合运营模式
马静1, 沈玉明1, 荣秀婷1, 张辉1, 凌孺1, 杨贺钧2, 时瑞廷2
1.国网安徽省电力有限公司经济技术研究院,安徽 合肥 230022;2.合肥工业大学 新能源利用与节能安徽省重点实验室,安徽 合肥 230009
摘要:
新能源并网规模的不断扩大和并网容量的大规模增加给电网的调节能力和新能源消纳问题带来了严峻的挑战,采用储能系统参与调峰是推进新能源发展的重要手段。为此,提出了综合考虑储能用户满意度和新能源调峰需求的电力系统双边交易联合运营模式和交易模型,以各方综合效益最大为目标,建立新能源侧、电网侧和用户侧的投标和出清模型,其中储能用户与新能源于日前完成双边交易以直接减小电网的调峰服务压力,最终由电网侧的储能消纳剩余新能源出力。算例仿真结果表明,所提运营模式不仅有效地调动了用户主动调峰的积极性,还减小了电网侧储能的调峰压力,在促进新能源发展和保障电力系统稳定运行方面具有重要意义。
关键词:  电力系统  储能  运营模式  双边交易  新能源消纳  调峰辅助服务
DOI:10.16081/j.epae.202204072
分类号:TM73
基金项目:国网安徽省电力有限公司科技项目(521209200011)
Joint operation mode of power system considering bilateral peak regulation service transaction between energy storage users and new energy
MA Jing1, SHEN Yuming1, RONG Xiuting1, ZHANG Hui1, LING Ru1, YANG Hejun2, SHI Ruiting2
1.Economic Research Institute of State Grid Anhui Electric Power Co.,Ltd.,Hefei 230022, China;2.Anhui Province Key Laboratory of Renewable Energy Utilization and Energy Saving, Hefei University of Technology, Hefei 230009, China
Abstract:
The continuous expansion of new energy grid-connected scale and the massive increase of new energy grid-connected capacity have brought severe challenges to the regulation capacity of power grid and the consumption of new energy. Using energy storage system to participate in peak regulation is an important means to promote the development of new energy. Therefore, the joint operation mode and transaction model of power system bilateral transaction are proposed comprehensively considering the satisfaction degree of energy storage users and the peak regulation demand of new energy. With the goal of maximizing the comprehensive benefit of each party, the bidding and clearing models of new energy side, power grid side and user side are established. Among them, energy storage users and new energy complete bilateral transaction day-ahead to directly reduce the peak regulation service pressure of power grid, and finally the energy storage at the power grid side consumes the remaining output of new energy. The simulative results show that the proposed operation mode not only effectively mobilizes the enthusiasm of users for active peak regulation, but also reduces the peak regulation pressure of energy storage at the power grid side, which is of great significance in promoting the development of new energy and ensuring the stable operation of power system.
Key words:  electric power systems  energy storage  operation mode  bilateral transaction  new energy consumption  peak regulation auxiliary service

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