Effects of Network Unbalances and Their Solutions in Resonant Grounded Power Distribution Systems

M. Barik, A. Gargoom, M. A. Mahmud, M. E. Haque, A. Oo, H. Al-Khalidi, Martin Cavanagh
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引用次数: 3

Abstract

This paper investigates the effects of network unbalances and proposes solutions to mitigate the effects for resonant grounded power distribution systems (RGPDSs). The effects of network capacitive unbalances are analyzed to investigate their sensitivities on the neutral voltage. The effects on the neutral voltage are minimized by controlling the unbalances. In this paper, a network balancing technique is developed which has the ability to optimally select reactance from distributed capacitor banks across different sections. The capacitors are selected in such a way that the residual currents are minimum at the substation, feeders, and sections. A weighted sum method is used in this paper to determine the optimal settings of the capacitor from variable capacitor banks with the primary objective to minimize the residual current at the substation along with two secondary objectives, i.e., minimizing the same for feeders and sections. Simulation studies are carried out to demonstrate the effectiveness of the proposed scheme in comparison with the system having a centralized capacitor bank. The performance of the proposed scheme is also evaluated for the scenario when the network configuration is changed. Simulation results demonstrate that the proposed technique is capable to limit the network unbalance at the substation, feeders, and sections.
谐振接地配电系统中网络不平衡的影响及其解决方法
本文研究了网络不平衡的影响,并提出了减轻谐振接地配电系统(rgpds)影响的解决方案。分析了网络容性不平衡对中性点电压的影响。通过控制不平衡,使对中性点电压的影响降到最低。本文提出了一种网络平衡技术,该技术具有从分布式电容器组中选择最佳电抗的能力。电容器的选择应使变电站、馈线和各区段的剩余电流最小。本文使用加权和方法从可变电容器组中确定电容器的最佳设置,其主要目标是最小化变电站的剩余电流,同时还有两个次要目标,即最小化馈线和分段的剩余电流。进行了仿真研究,与具有集中电容器组的系统进行了比较,证明了所提出方案的有效性。在网络配置发生变化的情况下,对所提方案的性能进行了评估。仿真结果表明,该方法能够有效地抑制变电站、馈线和区段的网络不平衡。
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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