A Novel optimized Planning Approach of BESS Considering Investor Benefit and Wind Curtailment

Ke Qing, Zhenyuan Zhang, Qi Huang, Weihao Hu, Yanting Hu, Zhe Chen
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Abstract

Energy storage system is a good solution to reduce the abandonment of electricity caused by highly penetrated renewable energy. With the liberalization of the electricity market, independent investor is permitted to participate in the planning and operation of the distribution network (DN). In this paper, a planning method for battery energy storage system (BESS) to maximize the profits of the investors and reduce the wind abandonment, from the perspective of independent investors, is proposed. Considering the growth of load and renewable energy penetration, as well as the economy of investment, deployment of BESS is divided into several stages. This problem is formulated as a bi-level programming. In the upper level, the installation time, location, rated power and capacity of the battery are optimized using particle swarm optimization (PSO) method. In the lower level, the most profitable charging/discharging power of the battery is obtained by interior point method (IPM), and then the optimal power flow (OPF) is carried out to dispatch wind energy considering the constraints. The proposed method is tested on a modified IEEE 33-bus system. Experimental results show that the proposed method can not only make independent battery investors profitable, but also reduce the wind curtailment of the DN.
一种考虑投资者利益和弃风的BESS优化规划新方法
储能系统是一个很好的解决方案,以减少高渗透的可再生能源造成的弃电。随着电力市场的开放,允许独立投资者参与配电网的规划和运营。本文从独立投资者的角度出发,提出了一种使投资者利润最大化,减少弃风的电池储能系统规划方法。考虑到负荷的增长和可再生能源的渗透率,以及投资的经济性,BESS的部署分为几个阶段。这个问题被表述为一个双层规划。在上层,采用粒子群算法对电池的安装时间、位置、额定功率和容量进行优化。在下层,通过内点法(IPM)获得电池最有利的充放电功率,然后考虑约束条件,进行最优潮流(OPF)调度风能。该方法在改进的IEEE 33总线系统上进行了测试。实验结果表明,该方法不仅可以使独立电池投资者获利,而且可以减少DN的弃风。
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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