距离继电器在电阻性故障时操作的改进

R. Cimadevilla, I. Garcia
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引用次数: 2

摘要

距离继电器为螺栓故障提供了良好的可靠性,但它们可能面临检测电阻性故障的问题,特别是在短线中。故障电阻也会影响继电器的安全性。本文解释了视电阻的概念。描述了带负荷流的远程进给和系统的非均匀性对四边形和Mho特性的影响。本文还讨论了相-相接地故障中接地电阻对相-地回路的影响。本文介绍了电抗线最常用的极化方法,以补偿系统的负载流和非均匀性。描述了一种自适应极化方法,该方法对任何类型的电阻性故障都具有良好的安全性和可靠性。考虑了特殊条件:开极条件下的断层、越野断层和演化断层。考虑了真实事件和RTDS案例。本文还根据线路阻抗、VT和CT误差、所使用的选相器、负载流和非均匀性补偿的类型、一般电抗线倾斜、负载侵占、电阻限制器算法(基于欧姆/相位或欧姆/回路)等,给出了设置距离继电器电阻到达的指导。包括来自实际安装的示例。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improvements in the operation of a distance relay during resistive faults
Distance relays provide good dependability for bolted faults but they can face problems detecting resistive faults, specially in short lines. The fault resistance can also affect the security of the relay. This paper explains the concept of the apparent resistance. The influence of the remote infeed with load flow and non-homogeneity of the system on both Quadrilateral and Mho characteristics is described. The effect of the ground resistance on the phase to earth loops during a phase-phase-ground fault is also reviewed. The paper describes the most common polarization methods used for the reactance line to compensate the load flow and non-homogeneity of the system. It describes an adaptive polarization method that provides good security and dependability for any type of resistive fault. Special conditions are considered: faults during open pole conditions, cross-country faults and evolving faults. Real events and RTDS cases are considered. The paper also provides a guide for setting the resistive reach of a distance relay, based on the line impedance, the VT and CT errors, the phase selector used, the type of load flow and non-homogeneity compensation, general reactance line tilting, load encroachment, resistive limiter algorithm (based on ohms / phase or ohms / loop), etc. Examples from real installations are included.
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