Time Characteristic Curve Based Earth Fault Relay Selectivity Assessment for Optimal Overcurrent Relay Coordination in Distribution Networks

M. Atsever, M. H. Hocaoğlu
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引用次数: 1

Abstract

Coordination of overcurrent relays has been handled with optimization techniques. Time and pick up settings are optimized by using three-phase fault magnitudes. Generally, Standard Inverse Characteristic (SIC) has been used for three-phase fault protection settings. However, single line to earth fault is the most common fault types in distribution networks. Definite Time Characteristic (DTC) is, widely, used for coordination of earth fault relays. Topology type, neutral earthing resistance and capacitive currents of underground cables may cause selectivity issues when DTC is used for the coordination. In this work, time characteristic curve (TCC) based earth fault relay selectivity assessment carried out on distribution network. Different earthing resistance and TCC are taken into account during optimization processes. Results show that both DTC and SIC have issues in terms of operating time and selective protection.
基于时间特征曲线的配电网过流继电器优化协调接地故障继电器选择性评价
用优化技术处理过流继电器的协调问题。时间和拾取设置通过使用三相故障大小进行优化。一般来说,标准反特性(SIC)已用于三相故障保护设置。而在配电网中,单线接地故障是最常见的故障类型。定时特性(DTC)被广泛用于接地故障继电器的协调。使用直接转矩控制进行协调时,地下电缆的拓扑类型、中性点接地电阻和容性电流可能会引起选择性问题。在配电网中进行了基于时间特征曲线(TCC)的接地故障继电器选择性评价。在优化过程中考虑了不同的接地电阻和TCC。结果表明,DTC和SIC在工作时间和选择性保护方面都存在问题。
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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