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Induced Voltage Current Simulations, Safety Criterion, and Mitigations for EHV Transmission Lines in Close Proximity

机译:近距离的超高压输电线路的感应电压和电流模拟,安全准则和缓解措施

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one of the benefits of double-circuit transmission lines is that line maintenance work can be performed on a de-energized circuit while the other circuit remains energized. However, induced voltages and currents can be generated on the de-energized line due to electrostatic and/or electromagnetic coupling effects and the close proximity to energized conductors. In order to mitigate the safety concern related to high induced voltages or currents, line discharging grounding switches (LDGS) may be installed. Since this can be an expensive solution, the magnitude of induced voltage and current is the key for defining safety criteria to judge whether or not a costly mitigation plan is needed. This paper presents the theory of induced voltage and current and a sensitivity analysis of influential parameters that impact each. In addition, a safety criterion using arc reach calculation is proposed to determine when LDGS are required. A case study is included.
机译:双回输电线路的好处之一是,可以在断电的电路上执行线路维护工作,而另一个电路保持通电。但是,由于静电和/或电磁耦合效应以及与通电导体的紧邻,会在断电的线上产生感应的电压和电流。为了减轻与高感应电压或电流有关的安全隐患,可以安装线路放电接地开关(LDGS)。由于这可能是一种昂贵的解决方案,因此感应电压和电流的大小是定义安全标准以判断是否需要昂贵的缓解计划的关键。本文介绍了感应电压和电流的理论,以及对每个影响参数的敏感性参数的敏感性分析。另外,提出了使用电弧到达量计算的安全标准来确定何时需要LDGS。包括一个案例研究。

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