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Calculation of Induced Sheath Voltage for Transposed and Untransposed Cable Conductors

机译:转置和未播出电缆导线诱导护套电压的计算

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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.
机译:在本文中,我们研究了Berakas电力管理公司文莱Darussalam(BPMC)的电力电缆,目的是找到电缆半径的最佳值及其相位距离。电磁耦合效果产生许多妨碍电缆安全操作的问题,并在金属护套或电缆屏蔽中产生感应电压。因此,本文的主要目的是通过发现相距离和半径的最佳值以及发现电缆的适当布置来贡献来贡献减少耦合效果的方式。本文通过在电缆的金属屏蔽中的相位距离中检查诱导电压来提出了地下电力电缆中电磁耦合效果的研究。该研究是针对平坦和三叶草的形成进行。还考虑转置和未转置导体两者都被认为进行比较。结果发现,具有换置的扁平形成具有较少的诱导的护套电压,并且没有转子对三叶草形成的影响。另外,我们计算了电缆导体之间的相位距离的最佳值,以及电缆的适当布置,以最小化BPMC中使用的电缆的金属屏蔽中的感应电压。

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