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Transient false tripping characteristic analysis of ground fault circuit interrupter

机译:接地故障断路器的瞬时误跳闸特性分析

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GFCI (ground fault circuit interrupter) is widely used to prevent from fire hazards, electronic shock and injury to persons by a persistent earth leakage current. On account of a application of GFCI, however the occurrence of false tripping due to lightning and switching surge has been growing. This unwanted tripping caused by the transient ground potential rise due to nearby lightning strokes could bring about a fatal loss like a power outage or a deterioration of power quality. In order to analyze the cause of malfunction, various samples of GFCI were investigated experimentally. When lightning impulse and EFT (electrical fast transient) were injected to GFCIs with the different leakage current detecting circuits and the wiring configurations, various false tripping characteristics were showed. Most of them showed malfunctions under surge current less than 3 kA. Also, it was found that a false tripping is dependent on a wiring of GFCI circuit and position of protective component Countermeasures using MOV (metal oxide varistor) and zener diode were suggested to prevent from a false tripping in this study.
机译:GFCI(接地故障断路器)被广泛用于防止持续的接地漏电电流引起的火灾,电击和人身伤害。由于使用了GFCI,但是由于雷电和开关浪涌导致的误跳闸现象越来越多。由附近的雷击引起的瞬时地电位上升引起的这种意外跳闸可能会导致致命的损失,例如停电或电能质量下降。为了分析故障的原因,对GFCI的各种样品进行了实验研究。当使用漏电流检测电路和布线结构不同的GFCI注入雷电脉冲和EFT(电快速瞬变)时,会显示出各种误跳闸特性。它们中的大多数在浪涌电流小于3 kA时表现出故障。此外,还发现误跳闸取决于GFCI电路的布线和保护组件的位置。在本研究中,建议使用MOV(金属氧化物压敏电阻)和齐纳二极管的对策来防止误跳闸。

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