Optimal Configuration and Economic Analysis of Energy Storage System in Regional Power Grid

Kaiyan Wang, Chengwen Zhou, Rong Jia, Jiao Wang, Zhengmian Wang
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引用次数: 3

Abstract

The combination of new energy and energy storage has become an inevitable trend in the future development of power systems with a high proportion of new energy, The optimal configuration of energy storage capacity has also become a research focus. In order to effectively alleviate the wind abandonment and solar abandonment phenomenon of the regional power grid with the penetration rate of new energy, this paper combines the actual demand of the power grid and proposes an optimized configuration method for the energy storage system (ESS). Firstly, model the cost and economic benefit calculation method of the energy storage system. Secondly, the optimization goal is to maximize the annual net income of the energy storage system and minimize the cost of electricity per kilowatt-hour, and the key operating status is used as the constraint condition to establish an energy storage optimization configuration model. Two energy storage modes, battery type and pumped storage, are comprehensively considered. Take an actual regional power grid as an example test system, and use an improved particle swarm algorithm to solve the optimization model. Considering the situation of no constraint and no more than 5% of new energy abandonment rate, the optimal allocation scheme of energy storage capacity is given, and the feasibility and economy of battery and pumped storage energy storage in different situations are comprehensively compared.
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区域电网储能系统优化配置及经济性分析
新能源与储能相结合已成为未来新能源高比例电力系统发展的必然趋势,储能容量的优化配置也成为研究热点。为了有效缓解随着新能源普及率的提高而出现的区域电网弃风弃光现象,本文结合电网的实际需求,提出了一种储能系统(ESS)的优化配置方法。首先,对储能系统的成本和经济效益计算方法进行建模。其次,以储能系统年净收益最大化和每千瓦时电力成本最小化为优化目标,以关键运行状态为约束条件,建立储能优化配置模型。综合考虑了蓄电池式和抽水蓄能两种储能方式。以某实际区域电网为例测试系统,采用改进的粒子群算法求解优化模型。考虑无约束、新能源弃用率不大于5%的情况下,给出了储能容量的最优配置方案,并对不同情况下电池储能和抽水蓄能储能的可行性和经济性进行了综合比较。
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