配电系统中高阻抗故障的检测

D. Hou
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引用次数: 58

摘要

当固体或低阻抗接地系统中的架空电线失去支撑并落在导电性差的表面时,它们会产生高阻抗故障(hif)。这些故障是一个重大的公共安全问题,因为故障电流通常太小,不能被传统的过流继电器检测到。这一问题引起了人们对在变电站一级检测与断开导线相关的hif的极大兴趣。本文提出了一种采用传统中继逻辑的HIF检测算法。该算法比许多黑盒检测方法(如神经网络)更容易理解和实现。我们讨论了算法设计的关键方面,如输入量选择,可靠参考的生成,对馈线环境负载噪声的适应,以及基于趋势和记忆的决策逻辑。我们使用从分段HIF测试和嘈杂变电站负载中收集的真实数据来验证检测结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Detection of high-impedance faults in power distribution systems
When overhead power lines in solid or low-impedance grounded systems lose supports and fall on poorly conductive surfaces, they generate high-impedance faults (HIFs). These faults are a great public safety concern because the fault currents are generally too small for detection by conventional overcurrent relays. This concern has generated great interest in the detection of downed conductor-related HIFs at the substation level. In this paper, we present an HIF detection algorithm that uses traditional relay logic. The algorithm is easier to understand and simpler to implement than many black-box detection methods such as neural networks. We discuss such key aspects of algorithm design as input quantity selection, generation of a reliable reference, adaptation to feeder ambient load noises, and decision logic based on trending and memories. We use real-world data collected from staged HIF tests and noisy substation loads to validate detection results.
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