Load model effect on distributed generation allocation and feeders' reconfiguration in unbalanced distribution systems

A. Zidan, R. Al-Abri, E. El-Saadany
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引用次数: 6

Abstract

Limitation of fossil fuels and the environmental constraints established by the Kyoto Protocol and other governmental initiatives caused the allocation of distributed generation (DG) to be a vital pillar in power system planning. Improper selection of the sizing and siting of DG systems can reduce their advantages. Network reconfiguration problem is to find a best configuration of distribution systems that gives minimum energy loss with satisfying the imposed operating constraints. This paper investigates the effect of load model on DG allocation and network reconfiguration problems. The proposed algorithm implemented and tested on the 25-bus unbalanced distribution system and the impact of load models is demonstrated. The constraints involved include voltage limits, line current limits, and radial topology.
不平衡配电系统中负荷模型对分布式发电分配和馈线重构的影响
化石燃料的限制和京都议定书以及其他政府举措所建立的环境约束使得分布式发电(DG)的分配成为电力系统规划的重要支柱。DG系统的尺寸选择和选址不当会降低其优势。电网重构问题是在满足给定运行约束的情况下,寻找能损失最小的配电系统的最佳配置。本文研究了负荷模型对DG分配和网络重构问题的影响。该算法在25母线不平衡配电系统上进行了实现和测试,并验证了负载模型的影响。所涉及的约束包括电压限制、线路电流限制和径向拓扑。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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