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On the interaction of 132 kV transmission system with communication line: Street cabinet resistivity evaluation

机译:关于132 kV输电系统与通信线路的相互作用:路边柜电阻率评估

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摘要

Occurrence of surge voltages and surge currents in low-power circuits is initiated primarily because of two sources, i.e, natural lightning and switching phenomena; the other source of surge occurrence is possibly due to the interaction of power systems and communication system. Results have indicated that soil resistivity is crucial in determining the adequacy of an earthing system. In region with the highest resistivity, the EPR and the scalar potential of the cabinet are very high. Remarkable low induced voltages at 200 m away from the power line when subjected to a single phase-to-earth fault was observed. At 50 m away, step and touch voltages could be dangerous due to the nature of soil in the vicinity. In addition, a 132 kV double circuit transmission line sharing the same corridor with a telecommunication line was also investigated and have also shown the induced voltages in the order of thousand volts on the cable due to a single phase-to-earth fault. Cables must be protected from such dangerous voltages. During normal peak load conditions voltages are considered not to inflict any damage to equipment and livestock.
机译:低功率电路中浪涌电压和浪涌电流的产生主要是由于两个原因引起的,即自然的雷电和开关现象。电涌发生的另一个来源可能是由于电力系统和通信系统的相互作用。结果表明,土壤电阻率对于确定接地系统的适当性至关重要。在电阻率最高的区域,机柜的EPR和标量电势非常高。当发生单相接地故障时,在距电源线200 m处观察到明显的低感应电压。在50 m处,由于附近土壤的性质,步进电压和接触电压可能很危险。此外,还研究了一条与电信线共享同一走廊的132 kV双回路传输线,并且还显示了由于单相接地故障而在电缆上产生的感应电压约为1000伏。必须保护电缆免受此类危险电压的伤害。在正常的峰值负载条件下,认为电压不会对设备和牲畜造成任何损害。

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