Investigation of BESSs' benefits in transmission and distribution systems operations using integrated power grid co-optimization

Seyed Masoud Mohseni‐Bonab, I. Kamwa, A. Moeini, A. Rabiee
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引用次数: 1

Abstract

This paper aims to develop a framework to study and optimize the benefits high penetrations of battery energy storage systems (BESS) in the integrated transmission & distribution (T&D) systems. A coupled T&D systems analysis framework is developed through a co-optimization approach. The following objective functions are considered in the proposed optimization approach: 1) Real power losses (PL), 2) Voltage deviation (VD) at load buses, and 3) loading margin (LM) or loadability of system. The framework is utilized to investigate the impacts of high penetrations of distributed energy resources with embedded BESS. Simulations are performed with 100 and 50 percent of BESS charging capacity. The proposed framework is examined on the IEEE 118-bus system. The results show that the installation of distributed BESSs at the distribution side, decrease the PL and VD and also improve the system total LM.
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基于综合电网协同优化的bess在输配电系统运行中的效益研究
本文旨在建立一个框架来研究和优化电池储能系统(BESS)在综合输配电(T&D)系统中的效益。通过协同优化方法,建立了耦合输配电系统分析框架。本文提出的优化方法考虑了以下目标函数:1)实际功率损耗(PL), 2)负载母线电压偏差(VD), 3)负载余量(LM)或系统的可负载性。该框架用于研究嵌入式BESS对分布式能源高渗透的影响。以100%和50%的BESS充电容量进行了模拟。在IEEE 118总线系统上对所提出的框架进行了验证。结果表明,在配电侧安装分布式bess,降低了PL和VD,提高了系统的总LM。
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