转置和非转置电缆导体感应护套电压的计算

M. Shaban, M. Salam, S. Ang, Md Norfauzi, Fashuan Wen, W. Voon
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引用次数: 2

摘要

本文以文莱达鲁萨兰国Berakas电力管理公司(BPMC)使用的电力电缆为研究对象,寻找电缆半径和相距的最优值。电磁耦合效应在电缆的金属护套或屏蔽层中产生感应电压,给电缆的安全运行带来诸多问题。因此,本文的主要目的是通过寻找相距和半径的最佳值以及电缆的合理布置来减少耦合效应。本文通过对地下电力电缆金属屏蔽层中感应电压随相距变化的研究,研究了地下电力电缆的电磁耦合效应。该研究是针对平坦地层和三叶草地层进行的。转置导体和未转置导体也被考虑作比较。结果表明,有转置的扁平地层具有较小的诱导鞘电压,并且对三叶草的形成没有影响。此外,本文还计算了BPMC中电缆导体间相距的最佳值和电缆的合理布置,以最大限度地降低金属屏蔽层中的感应电压。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Calculation of induced sheath voltage for transposed and untransposed cable conductors
In this paper, we studied the power cables used in Berakas Power Management Company Brunei Darussalam (BPMC), with the aim of finding the optimal values of radius of the cables and their phase distance. The electromagnetic coupling effect creates many problems hindering safe operation of cables and produces induced voltages in metallic sheath or shield of cables. Therefore, the main objective of this paper is to contribute ways for reducing coupling effect by finding the optimal values of phase distance and radius and also by discovering proper arrangement of the cables. This paper presented a study of the electromagnetic coupling effect in underground power cables by examining induced voltages with the variation in phase distance in metal shield of cables. The study is carried out for both the flat and trefoil formations. Both the transposed and un-transposed conductors are also considered for comparison. It is found that the flat formation with transposition has less induced sheath voltage and there is no effect of transposition on trefoil formation. In addition, we calculated the optimal values of phase distance between cable conductors and the proper arrangement for the cables to minimize the induced voltage in metallic shield for the cables used in BPMC.
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