利用IEC 61850协议缓解交感跳闸

Shantanu Kumar, N. Das, S. Islam
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引用次数: 1

摘要

智能电子设备(Intelligent Electronic device,简称ied)能够在变电站环境中可靠、高效地诊断数据包的故障和流量问题。这些设备可以确定异常系统状态,广域干扰,为操作人员在状态监测和诊断方面提供了更大的灵活性。在配电系统中,最终用户在网络中遇到多个故障,而在故障馈线上出现这样一个令人讨厌的电力中断会导致交感跳闸。交感跳闸发生在高负载条件下,导致整个保护系统因断段故障而虚假跳闸。这类故障的发生可归因于配电馈线负荷不平衡、电压恢复滞后、馈线电压膨胀/跌落等原因。通常,当包含低惯性旋转设备的负载连接到配电馈线时,就会出现这种现象。本文利用优化网络工程工具(OPNET)在实验室环境中模拟、减轻了交感跳闸引起的故障。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mitigation of Sympathetic Tripping Leveraging on IEC 61850 Protocol
Intelligent Electronic Devices (IEDs) diagnose faults and traffic issues of data packets in a reliable and efficient manner in a substation environment. These devices determine abnormal system condition, wide area disturbances offering greater flexibility to the operator in terms of condition monitoring and diagnostics. In a distribution system, end user get multiple faults in the network and one such nuisance disruption of power on a faulty feeder results in sympathetic tripping. Sympathetic tripping occurs during high load conditions causing entire protection system to spuriously trip due to an out of section fault. Occurrence of such faults could be attributed to load unbalance in the distribution feeders, delayed voltage recovery conditions, voltage swell/sag in the feeders etc. Usually, this phenomenon occur when loads containing low inertia rotating equipment are connected to distribution feeders. In this paper, an Optimized Network Engineering Tool (OPNET) is used to simulate, mitigate faults attributed to Sympathetic Tripping in a laboratory environment.
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