基于粒子群算法的配电系统短路降电平优化重构

A. Parizad, H. Baghaee, A. Yazdani, G. Gharehpetian
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引用次数: 16

摘要

配电系统在不断发展,因此,可用的短路电平可能超过开关柜的额定值。减轻短路电流的有效方法之一是重新配置。网络重构是指在配电系统中打开和关闭开关,从而改变网络拓扑结构,从而改变从变电站到用户的潮流。配电馈线重构是一个复杂的非线性组合问题,因为配电馈线的开关状态是不可微的。本文提出了一种基于粒子群优化(PSO)算法的DFR算法,以最小化短路水平。在IEEE 83-Bus配电系统模型上的数值测试结果表明了该算法的可行性、真实性和高效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal distribution systems reconfiguration for short circuit level reduction using PSO algorithm
Power distribution systems are developing continuously and, consequently, the available short-circuit levels may exceed the ratings of the switchgear. One of the efficient methods of alleviating short-circuit currents is the reconfiguration. Network reconfiguration refers to the opening and closing of switches in a distribution system so that the network topology and, consequently, power flow from the substation to the consumers are changed. Distribution feeder reconfiguration (DFR) is a complex nonlinear combinatorial problem since the status of the switches is non-differentiable. This paper presents a new efficient algorithm for DFR, based on particle swarm optimization (PSO) algorithm, in order to minimize the short-circuit level. The numerical results of the proposed algorithm tested on the IEEE 83-Bus distribution system model reveals the feasibility, authenticity, and efficiency of the proposed PSO-based optimal reconfiguration algorithm.
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