开关事件产生的瞬态电磁场对GIS控制电缆产生的感应电压

M. Mohana Rao, M. Thomas, B.P. Singh
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引用次数: 0

摘要

由于气体绝缘变电站(GIS)的开关操作而产生的非常快的瞬态过电压(VFTO)可能通过诸如SF/sub - 6/到空气套管,SF/sub - 6/到电缆终端,非金属观察端口和法兰等不连续点传播到外部环境中。为了保证变电站控制系统的可靠运行,必须使变频振荡器产生的瞬变电磁场在允许的范围内。由于这些瞬态场的频率分量高达200mhz,它们可能在屏蔽控制电缆的金属护套上感应电流。这反过来又会根据电缆的传输阻抗在电缆的中心导体上产生不希望的电压。本文研究了瞬态电磁场、接地方式(单端接地还是两端接地)、瞬态电磁场垂直分量和水平分量的贡献、电缆长度和电缆离地高度对感应电流和电压的影响。最后,分析并报道了不同接地方式下电缆传输阻抗对感应电压的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Induced voltage on control cables in a GIS due to the transient EM fields generated during switching events
Very fast transient overvoltages (VFTO) generated due to switching operations in a gas insulated substation (GIS) may propagate out into external environment through discontinuities like SF/sub 6/ to air bushing, SF/sub 6/ to cable termination, nonmetallic viewing ports and flanges, etc. For the reliable operation of substation controls, it is essential that the transient electromagnetic (EM) fields radiated due to VFTO be within permissible levels. Since these transient fields have frequency components up to 200 MHz, they may induce currents on the metallic sheath of the shielded control cables. This in turn may induce undesired voltages on the central conductor of the cable depending on the transfer impedance of the cable. In the present paper, the influence of transient EM fields, type of grounding (single end grounding or both end grounding), contribution of vertical and horizontal components of transient fields, length of the cable and height of cable above ground on induced currents and voltages have been studied. Finally, the role of transfer impedance of the cable on the induced voltages for different types of groundings is analysed and reported.
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