Study of the Dynamic Behavior of a DSTATCOM Installed in a Distribution Network in Case of Single and Multiphase Short Circuit

Hassane Ousseyni Ibrahim, F. Fifatin, Arouna Oloulade
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Abstract

This paper investigated the behavior of a DSTATCOM in the face of contingencies that may arise in an electrical power distribution network. It shows that DSTATCOM is an effective attenuator to limit the impacts of perturbations on the distribution network. The model equations are simulated in a MATLAB environment and have shown that the exactitude of the network parameters is a key determinant of the resilience of a disrupted distribution network in the presence of an optimally positioned DSTATCOM at a node. The capacitive current of the DSTATCOM increases inversely with a bad power factor and a critical voltage drop. The DSTATCOM in a network is therefore more solicited when the operating parameters of this network degrade as a result of single-phase or multiphase short circuits. Distribution system operators must therefore design protection plans that truly and sustainably limit the impacts of short circuits on distribution systems.
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配电网络中安装的 DSTATCOM 在单相和多相短路情况下的动态行为研究
本文研究了 DSTATCOM 面对配电网络中可能出现的突发事件时的行为。研究表明,DSTATCOM 是一种有效的衰减器,可限制扰动对配电网络的影响。模型方程在 MATLAB 环境中进行了仿真,结果表明,当节点上的 DSTATCOM 处于最佳位置时,网络参数的精确性是决定配电网络恢复能力的关键因素。DSTATCOM 的电容电流与不良功率因数和临界压降成反比增长。因此,当网络的运行参数因单相或多相短路而降低时,网络中的 DSTATCOM 就更需要保护。因此,配电系统运营商必须设计保护计划,真正并持续地限制短路对配电系统的影响。
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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