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Distance Protection Impedance Measurement for Inhomogeneous Multiple-Circuit 400/150 kV Transmission Lines with Shared Towers

机译:具有共用塔的非均匀多回路400/150 kV输电线路的距离保护阻抗测量

摘要

Combined transmission lines where different voltage levels shares same towers are used in transmission systems in order to save way of right. Faults between different voltage levels results in complex fault current distributions due to mutual couplings and the fact that the faulted phases no longer are interconnected in a simple way but via transformers and infeed from remaining parts of the network. Distance relay measured fault loop impedance shows wide ranges of variations for both phase-phase loops as well as phase-earth loops. No simple relations exist. Simulation models can be used to study fault loop impedance for combined faults and thereby shed light on relay trips. This study uses actual fault records, analytical method and PSCAD simulation studies to analyse combined faults in an existing 400 and 150 kV transmission line owned by Danish TSO Energinet.dk. The results clearly show that an accurate modelling followed by fault loop impedance calculation is possible. Selected results show that fault loop impedance can be located in unexpected regions of the complex R-X plane.
机译:为了节省正确的方法,在输电系统中使用了不同电压电平共享相同塔架的组合输电线路。不同电压电平之间的故障会由于相互耦合而导致复杂的故障电流分布,而且故障相不再以简单的方式而是通过变压器互连并从网络的其余部分馈入,这一事实。距离继电器测得的故障回路阻抗对相-相回路和相-地回路都显示出很大的变化范围。没有简单的关系。仿真模型可用于研究组合故障的故障回路阻抗,从而揭示继电器跳闸的情况。本研究使用实际故障记录,分析方法和PSCAD仿真研究来分析丹麦TSO Energinet.dk拥有的现有400 kV和150 kV输电线路中的组合故障。结果清楚地表明,随后进行故障环路阻抗计算的准确建模是可能的。选定的结果表明,故障回路阻抗可以位于复杂的R-X平面的意外区域中。

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