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An efficient optimal capacitor allocation in DG embedded distribution networks with islanding operation capability of micro-grid using a new genetic based algorithm

机译:具有基于遗传算法的微电网孤岛运行能力的DG嵌入式配电网中高效的最优电容器分配

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摘要

Capacitor banks are commonly used in electric distribution networks as a kind of reactive power sources. These sources are located in distribution networks for power factor correction, loss reduction, and voltage profile improvement. For these purposes optimal capacitor placement is needed to determine capacitors types, sizes and locations. Distribution system with Distributed Generation (DG) can have micro-grid that it will operate in both grid-connected and islanded modes of operation. The aim of this paper is to provide a method for optimal capacitor (fixed and switchable) placement in such a distribution network. The effect of different operation modes of DGs on the network is also investigated. The proposed method can guarantee the benefits of capacitor installation at different load levels. It is based on genetic algorithm (GA) with new coding and operators. Switching table of the allocated capacitors can be found through the proposed structure of the chromosome. Some case studies developed to illustrate the efficiency of the proposed method. (C) 2015 Elsevier Ltd. All rights reserved.
机译:电容器组通常在配电网络中用作一种无功功率源。这些电源位于配电网络中,用于功率因数校正,损耗减少和电压曲线改善。为此,需要最佳的电容器放置来确定电容器的类型,尺寸和位置。具有分布式发电(DG)的配电系统可以具有微电网,它将以并网和孤岛运行模式运行。本文的目的是提供一种在这种配电网络中最佳放置电容器(固定和可切换)的方法。还研究了DG的不同操作模式对网络的影响。所提出的方法可以保证在不同负载水平下安装电容器的好处。它基于具有新编码和运算符的遗传算法(GA)。通过建议的染色体结构可以找到分配电容器的开关表。一些案例研究表明了所提出方法的有效性。 (C)2015 Elsevier Ltd.保留所有权利。

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