Impact of the errors in the PMU response on synchrophasor-based fault location algorithms

Tamara Becejac, P. Dehghanian, M. Kezunovic
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引用次数: 16

Abstract

Over the past decades, many synchrophasor applications have been developed but the performance under various PMU errors has not been explored and is unknown for most applications. This paper discusses the impact of PMU measurement errors and limitations originated from hardware implementation of various phasor estimation algorithms on the accuracy of the synchrophasor-based fault location application, in particular on the fault location algorithm that uses synchronized phasors at both line terminals. The application test procedure is implemented on a simple two-bus system modeled in ATP-EMTP with different types of fault scenarios simulated and various real PMUs exposed to the fault signals through hardware-in-the-loop testing. Results acquired from such evaluations provide invaluable knowledge about limitations and vulnerabilities of synchrophasor end-use applications.
PMU响应误差对基于同步相量的故障定位算法的影响
在过去的几十年里,许多同步相量应用已经被开发出来,但在各种PMU误差下的性能还没有被探索,对于大多数应用来说是未知的。本文讨论了PMU测量误差和各种相量估计算法硬件实现的局限性对基于同步相量的故障定位应用精度的影响,特别是对在线路两端使用同步相量的故障定位算法的影响。应用测试过程在一个简单的双总线系统上实现,在ATP-EMTP模型中模拟了不同类型的故障场景,并通过硬件在环测试将各种真实的pmu暴露在故障信号中。从这些评估中获得的结果提供了关于同步或最终用途应用的局限性和脆弱性的宝贵知识。
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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