The Way of Reducing Current Values in Optical Ground Wires at Asymmetrical Faults on Overhead Transmission Lines

IF 0.5 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC
G. Égamnazarov
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引用次数: 1

Abstract

Abstract Given the fact that the installing costs of an optical ground wire on overhead lines directly depend on its cross-section, which in turn depends on the level of fault current it should withstand, in order to reduce these current values in the optical ground wire, I suggested performing its isolated descents from the end towers of the line with its transition to an optical cable. The research was carried out on the example of a 500 kV overhead line in the National Electric Power Grid. The Method of Symmetrical Components for calculating asymmetrical fault currents was not used; therefore, calculations were carried out on the base of presenting the line as a multi-wire system for the considered case as a five-wire system (optical ground wire, steel ground wire, and three phase wires). Such approach allows taking into account the initial asymmetry of the line parameters and modeling any kind of asymmetrical faults. The analyses of calculated results were performed. The conclusive evidence that the optical ground wire isolated descents from the end towers of the line give the possibility of reducing the level of maximal fault current distribution values in it and therefore its cross section, is presented.
架空输电线路不对称故障时降低光接地线电流值的方法
考虑到在架空线路上安装光纤接地线的成本直接取决于它的横截面,而横截面又取决于它应该承受的故障电流水平,为了减少光纤接地线中的这些电流值,我建议在过渡到光缆时从线路的端塔进行隔离下降。以国家电网500kv架空线路为例进行了研究。不采用对称分量法计算不对称故障电流;因此,计算是在将线路呈现为多线系统的基础上进行的,所考虑的情况是五线系统(光学地线,钢地线和三相线)。这种方法允许考虑线路参数的初始不对称性,并对任何类型的不对称故障进行建模。对计算结果进行了分析。本文给出了确凿的证据,证明从线路的端塔分离出的光学地线有可能降低线路中最大故障电流分布值的水平,从而降低其横截面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Electrical Control and Communication Engineering
Electrical Control and Communication Engineering ENGINEERING, ELECTRICAL & ELECTRONIC-
自引率
14.30%
发文量
0
审稿时长
12 weeks
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