利用改进粒子群算法实现带连接线和电容的配电网优化重构

Chatuphat Karaaom, P. Jirapong, P. Thararak
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引用次数: 0

摘要

随着电力需求的增加,可再生能源的分布式发电(dg)在发电系统中变得越来越重要。配电网对dg的分配没有具体的要求。dg安装不当会给电力公司和用户造成重大问题,如电能损耗增加、电网电压下降不当等。为了提高系统效率,减轻配电系统安装不当所带来的影响,本文提出了配电网优化配置的方法,即在配电网中加入一条联络线和一个电容器。采用改进的粒子群优化(I-PSO)技术确定了联络线和电容器的最佳配置,以最大限度地减少能量损失并改善电压分布。提出的网络重构方法被实施到一个实际的配电网络中,该网络具有来自泰国坎彭彭省的高装机容量的生物质DG单元。仿真测试结果表明,该方法不仅能显著降低电网的能量损失,而且能显著降低电网的电压降。
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 Network Reconfiguration Implemented with Tie Line and Capacitor Using Improved Particle Swarm Optimization
Regarding the increase in electrical power demands, distributed generations (DGs) from renewable energy resources are becoming essential for electrical generation systems. However, there are no specific requirements for DGs allocation in a distribution network. The improper installation of the DGs can cause crucial issues to electric utilities and customers, such as the increase in energy losses and the improper voltage drop in the networks. In this paper, the optimal distribution network reconfiguration implemented with a tie line and a capacitor is proposed to enhance system efficiency and mitigate the impacts of the improper DGs installation. The optimal allocation of the tie line and the capacitor is determined using an improved particle swarm optimization (I-PSO) technique to minimize the energy losses and improve the voltage profile. The proposed network reconfiguration approach is implemented into a practical distribution network with a high installed capacity of the biomass DG unit from Kamphaeng Phet province, Thailand. The simulation test results show that the proposed approach can significantly reduce not only the energy losses but also the voltage drop in the network.
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