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Novel Methods for High-Impedance Ground-Fault Protection in Low-Voltage Supply Systems

机译:低压电源系统中高阻抗接地故障保护的新方法

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Many high-impedance ground faults (HIGFs) that happen in low-voltage (LV) systems often cause customer supply loss, fire, and human safety hazards. Traditional ground-fault protection is provided by the residual current circuit breaker (RCCB). The. RCCB is usually employed in an analogue measuring circuit and often causes nuisance tripping due to capacitive leakage current and load-switching operations. It offers only ground fault protection to a certain extent and has difficulty in detecting HIGFs associated with a dielectric material defect. In this paper active power variation-based protection for HIGFs is developed, and a dissipation factor (DF)-based criterion for identifying load-switching operation is proposed. They are implemented by cross-correlation analysis between phase voltage and residual current in single-phase networks. A digital protection scheme is also designed. EMTP simulation results show that the new protection can remove the influences of capacitive leakage current and load-switching operations and is able to detect HIGFs and prevent electric shock with high sensitivity and robustness.
机译:低压(LV)系统中发生的许多高阻抗接地故障(HIGF)通常会导致客户供电损失,火灾和人身安全隐患。剩余电流断路器(RCCB)提供传统的接地故障保护。的。 RCCB通常用于模拟测量电路中,并且由于电容性泄漏电流和负载切换操作而经常引起误跳闸。它只能在一定程度上提供接地故障保护,并且很难检测与介电材料缺陷相关的HIGF。本文开发了基于有功功率变化的HIGF保护器,并提出了基于耗散因子(DF)的负荷切换操作判据。它们是通过单相网络中相电压和剩余电流之间的互相关分析来实现的。还设计了一种数字保护方案。 EMTP仿真结果表明,新的保护措施可以消除电容性漏电流和负载切换操作的影响,并且能够检测HIGF并以高灵敏度和鲁棒性防止电击。

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