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The Effectiveness of Compensated Passive Loops for Mitigating Underground Power Cable Magnetic Fields

机译:补偿无源环路对减轻地下电力电缆磁场的有效性

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摘要

This paper analyzes the possibility of using compensated passive loops to obtain a high mitigation effectiveness of the magnetic field generated by underground single-core cables. With that aim, several loops arrangements are simulated in a case study, including new ones called enchained loops, whose geometry reminds short-circuited conductors at both ends, but with the advantage of requiring smaller compensating capacitors. The results show a drastic spot reduction in several configurations, but with the drawback of high sensitivity to parameters. This aspect should be taken into account in the final design, so a design procedure is proposed that includes measures to alleviate this problem. Eventually, a comparison using shielding with high-conductivity material is provided.
机译:本文分析了使用补偿无源环路来获得地下单芯电缆产生的磁场的高缓解效果的可能性。为此目的,在一个案例研究中模拟了几个回路的布置,包括称为链式回路的新回路,这种回路的几何形状使两端的导体短路,但其优点是需要使用较小的补偿电容器。结果显示了几种配置中的斑点大大减少,但缺点是对参数的敏感性高。在最终设计中应考虑到这一方面,因此提出了一种设计程序,其中包括减轻该问题的措施。最终,提供了使用高导电材料屏蔽的比较。

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