Mitigation of magnetic field under Egyptian 500kV overhead transmission line

A. E. El Dein
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引用次数: 6

Abstract

The paper presents an efficient way to mitigate the magnetic field resulting from the three-phase 500kV single circuit high voltage transmission line existing in Egypt, by using a passive loop conductor in order to reduce the right-of-way (ROW). The paper used an accurate method for the evaluation of 50Hz magnetic field produced by overhead transmission lines. This method is based on the matrix formalism of multiconductor transmission lines (MTL). This method obtained a correct evaluation of all the currents flowing in the MTL structure, including the currents in the subconductors of each phase bundle, the currents in the ground wires, the currents in the mitigation loop, and also the earth return currents. Furthermore, the analysis also incorporates the effect of the conductor's sag between towers, and the effect of sag variation with the temperature on the calculated magnetic field. Good results have been obtained and passive loop conductor design parameters have been recommended for this system at ambient temperature (35°C).
埃及500kV架空输电线路下磁场的缓解
本文提出了一种有效的方法,通过使用无源环路导体来减轻埃及现有的500kV三相单路高压输电线路产生的磁场,以减少路权(ROW)。本文采用一种准确的方法对架空输电线路产生的50Hz磁场进行了评价。该方法基于多导体传输线的矩阵形式。该方法对MTL结构中流过的所有电流进行了正确的评估,包括各相束子导体中的电流、接地线中的电流、缓解回路中的电流以及接地回路中的电流。此外,分析还考虑了塔间导线垂度的影响,以及垂度随温度变化对计算磁场的影响。在环境温度(35℃)下获得了良好的结果,并推荐了该系统的无源环路导体设计参数。
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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