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Evolutionary algorithms for the reconfiguration of radial distribution networks considering long interruption and voltage sag disruption costs

机译:考虑长时间中断和电压暂降中断成本的径向配电网重构的进化算法

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In this paper a computational implementation of an evolutionary algorithm (EA) is shown to tackle the problem of reconfiguring radial distribution systems under different load conditions. The developed module considers power quality indices such as long duration interruptions and customer process disruptions due to voltage sags, by using the Monte Carlo simulation method. Power quality costs are considered into the mathematical problem formulation, which are added to the cost of network losses. As for the EA codification proposed, a decimal representation is used. The EA operators, namely selection, recombination and mutation, which are considered for the reconfiguration algorithm, are herein analyzed. A number of selection procedures are considered, namely tournament, elitism and a mixed technique using both elitism and tournament. The recombination operator was developed by considering a chromosome structure representation that maps the network branches and system radiality, and another structure that considers the network topology and feasibility of network operation to exchange genetic material. The topologies regarding the initial population are randomly produced so as radial configurations are produced through Prim and Kruscal algorithms that rapidly build minimum spanning trees.
机译:在本文中,进化算法(EA)的计算实现被显示为解决在不同负载条件下重新配置径向分布系统的问题。通过使用蒙特卡洛模拟方法,开发的模块考虑了电能质量指标,例如长时间中断和由于电压骤降而造成的客户流程中断。在数学问题公式中考虑了电能质量成本,这又增加了网络损耗的成本。至于建议的EA编纂,则使用十进制表示形式。本文分析了针对重新配置算法考虑的EA算子,即选择,重组和突变。考虑了许多选择程序,即比赛,精英比赛和同时使用精英和比赛的混合技术。通过考虑映射网络分支和系统半径的染色体结构表示法以及考虑网络拓扑和网络操作交换遗传物质的可行性的另一种结构来开发重组算子。有关初始种群的拓扑是随机产生的,因此通过Prim和Kruscal算法可以快速生成最小的生成树,从而生成径向配置。

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