Adaptive distance protection of double-circuit lines based on differential equation fault loop model

M. Bozek, J. Izykowski
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引用次数: 3

Abstract

The paper presents an adaptive procedure for digital distance protection device that allows to compensate for the negative influence of the reactance effect, caused by fault resistance and pre-fault power flow. The procedure utilizes locally measured phase currents and voltages and has been designed to operate with double-circuit power lines. The algorithm calculates on-line shift vector components that allow to change the position of relay operating characteristics. As a result, it is possible to avoid mis- or maloperation of the distance relay. Evaluation of the algorithm has been performed with use of voltage and current signals obtained from versatile simulations in ATP-EMTP.
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基于微分方程故障环模型的双回线路自适应距离保护
本文提出了一种数字距离保护装置的自适应程序,可以补偿由故障电阻和故障前潮流引起的电抗效应的负面影响。该程序利用本地测量的相电流和电压,并设计用于双回路电源线。该算法计算在线位移矢量分量,允许改变继电器工作特性的位置。因此,可以避免距离继电器的误操作或误操作。利用ATP-EMTP中多功能仿真获得的电压和电流信号,对该算法进行了评估。
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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