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A Fortescue Approach for Real-Time Short Circuit Computation in Multiphase Distribution Networks

机译:多相配电网中实时短路计算的Fortescue方法

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This paper discusses the need for short circuit analysis in real-time applications of modern distribution networks and presents a short circuit tool that builds on recent advances in Fortescue-based current injection power flow. The proposed short circuit computation (SCC) method is fundamentally based on the symmetrical components transformation of three-phase, two-phase, and one-phase systems. Unlike the classical symmetrical components SCC method that postulates a structurally symmetrical three-phase pre-fault network with balanced loading, the proposed method accounts for multiphase networks that are comprised of three-phase, two-phase, and one-phase network parts; given a pre-fault power flow solution, it requires a maximum of three current injection iterations to compute the short circuit current flow in the entire network. Numerical results show that the Fortescue SCC approach with multiphase lines exhibits significant computational performance improvement on large-scale networks as compared to classical SCC in phase coordinates.
机译:本文讨论了现代配电网络实时应用中对短路分析的需求,并提出了一种基于基于Fortescue的电流注入功率流的最新进展的短路工具。所提出的短路计算(SCC)方法基本上是基于三相,两相和一相系统的对称分量变换。与经典的对称分量SCC方法假定结构对称的三相预故障网络具有均衡负载不同,该方法考虑了由三相,两相和一相网络部分组成的多相网络。在给出故障前潮流解决方案的情况下,最多需要进行三次电流注入迭代,才能计算整个网络中的短路电流。数值结果表明,与传统的SCC相坐标相比,具有多相线的Fortescue SCC方法在大规模网络上显示出显着的计算性能改进。

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