应用电流行波相位量和预故障电压的定向继电保护

Kuldip Nayak, A. Pradhan
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引用次数: 0

摘要

一种基于行波的线路保护方案通过比较继电器位置出现的故障前模态电压和模态电流波前的极性来识别故障方向。模态分量分析涉及的信号(6个电压和6个电流)比相域信号(3个电压和3个电流)更多,这给用于行波提取的高采样率(1 MHz)硬件电路带来了负担。本文提出了一种改进的定向继电方案,利用故障前相电压样本和相电流行波,从而避免了模态网络的分析,减少了计算量。该方法不受容性电压互感器瞬态响应的影响,不需要对电压信号进行高采样率。通过对PSCAD 400 kV输电网的各种故障模拟,对其性能进行了评价,结果表明该方法具有良好的应用前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Directional Relaying Applying Phase Quantities of Current Traveling Wave and Prefault Voltage
A traveling wave-based line protection scheme identifies the direction of fault by comparing the polarities of prefault modal voltage and modal current wavefronts appearing at the relay location. Analysis of modal components involves more signals (six voltages and six currents) compared to the phase domain signals (three voltages and three currents), which burdens the hardware circuitry at high sampling rates (1 MHz) used for traveling wave extraction. In this paper, an improved solution for the directional relaying scheme is proposed by utilizing the prefault phase voltage samples along with phase current traveling waves, thereby avoiding the analysis of modal networks and reducing the associated computational burden. The method is not affected by the transient response of capacitive voltage transformers, and a high sampling rate for voltage signals is not required. Its performance is evaluated by simulating various faults on a 400 kV transmission network in PSCAD and found to be promising.
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