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Dynamic fault locator for three-terminal transmission lines for phasor measurement units

机译:用于相量测量单元的三端传输线的动态故障定位器

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摘要

The study presents a fault locator for three-terminal transmission lines under dynamic conditions such as power oscillation based on synchronised phasor measurement units. This approach based on conventional static fault locator can express the dynamic characteristics of supplied signals and consider them as time-variant signals whose magnitude and frequency are changing against time. Therefore the authors can apply its ability of describing dynamic characteristics to threeterminal transmission lines and get the dynamic parameters of transmission lines under the dynamic conditions. By using Newton iteration, the proposed dynamic fault locator can acquire the three-terminal fault-location indices to identify a fault section and estimate the distance to fault. The performance of the proposed method is evaluated by Power Systems Computer Aided Design/Electromagnetic Transients including DC (PSCAD/EMTDC)-generated signals under various situations. An extensive set of simulation results show that the distinctive features of this method are that it performs with better accuracy than the conventional method for all types of faults at different fault locations and is practically immune to fault resistance.
机译:该研究提出了一种基于同步相量测量单元的三端输电线路故障定位器,用于动态条件下,例如功率振荡。这种基于常规静态故障定位器的方法可以表达所提供信号的动态特性,并将其视为随时间变化的信号,其幅度和频率随时间变化。因此,作者可以将其描述动态特性的能力应用于三端输电线路,并在动态条件下获得输电线路的动态参数。通过使用牛顿迭代,所提出的动态故障定位器可以获取三端故障位置索引,以识别故障区域并估计到故障的距离。电力系统计算机辅助设计/电磁瞬变(包括在各种情况下由DC(PSCAD / EMTDC)生成的信号)对所提出方法的性能进行了评估。大量的仿真结果表明,该方法的显着特点是,与传统方法相比,该方法在不同故障位置的所有类型的故障均具有更高的精度,并且几乎不受故障影响。

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