The Interline Power Flow Devices Location Selection Method Based on Novel Indexes

Zheng Li, Yuqiao Jia, Dajiang Wang, Jingbo Zhao, Ke Xu, Bing Xie
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Abstract

FACTS can improve the transmission capacity of the power system with a high ratio of renewable energy, lower the loss of the whole system, and handle the modern power system's continually increasing power demand. As a new FACTS device, IPFC has the function to regulate multiple lines' power flow As a brand-new FACTS component, IPFC can control multiple lines' power flow simultaneously. To make IPFC control the power flow of key lines efficiently, based totally on the power flow entropy (PFE) theory, the power flow transfer entropy (PFTE) and the power flow distribution entropy are proposed as the IPFC location and capacity determination indexes to determine the IPFC key control lines after the power flow transfer of the system and optimize the IPFC control strategy, alleviate the heavy load phenomenon of power flow of the line, improve the capacity utilization rate of the transmission line, and balance the power flow distribution of the system. The power flow injective analysis model is used in the IEEE standard 118 bus system.
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基于新指标的线间潮流装置选址方法
FACTS可以提高可再生能源比例高的电力系统的传输能力,降低整个系统的损耗,应对现代电力系统不断增长的电力需求。IPFC作为一种新型的FACTS器件,具有多线路功率流调节功能,作为一种全新的FACTS器件,IPFC可以同时控制多线路的功率流。为使IPFC有效控制关键线路的潮流,完全基于潮流熵(PFE)理论,提出潮流转移熵(PFTE)和潮流分配熵作为IPFC定位和容量确定指标,确定系统潮流转移后IPFC关键控制线,优化IPFC控制策略,缓解线路潮流重负荷现象。提高输电线路的容量利用率,平衡系统潮流分布。功率流注入分析模型应用于IEEE标准118总线系统。
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