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Impact of electric potential due to faulted overhead ground wire on distribution system equipment

机译:架空地线故障对配电系统设备造成的电势影响

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This paper analyzes the impact of electric potential (EP) due to faulted overhead ground wire (OHGW) on distribution system equipment. The fault current injection to direct OHGW, which may cause insulation failure to electrical equipment, was simulated using the current distribution electromagnetic interference grounding and soil structure (CDEGS). Three cases were investigated on a 115/22 kV substation and a 22 kV distribution of provincial electricity authority (PEA): 1) the existing system, 2) bonding between the ground grid substation and the ground rod located in earth under the riser pole, and 3) the OHGW of the take-off located in the substation and the OHGW of the riser pole are connected. It can be confirmed from the study results that bonding between the ground grid substation and the ground rod located in the earth under the riser pole offers an effective means to help decrease the EP between the OHGW and the ground, therefore reducing the risk of equipment damage.
机译:本文分析了架空接地线(OHGW)损坏引起的电势(EP)对配电系统设备的影响。使用电流分布电磁干扰接地和土壤结构(CDEGS)模拟了直接注入OHGW的故障电流注入,这可能会导致电气设备绝缘故障。在115/22 kV变电站和22 kV省电力局(PEA)配电系统中调查了3种情况:1)现有系统,2)接地网变电站与立杆下的接地棒之间的连接, 3)位于变电站的出口的OHGW与立管的OHGW相连。从研究结果可以证实,接地变电站与立杆下方位于地面的接地棒之间的粘接提供了一种有效的方法,有助于降低OHGW与地面之间的EP,从而降低了设备损坏的风险。

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