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Accurate Fault Location for Untransposed/Transposed Transmission Lines Using Sparse Wide-Area Measurements

机译:使用稀疏广域测量对未换位/换位传输线进行准确的故障定位

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摘要

This paper presents a new approach for locating short-circuit faults on untransposed transmission lines. Various fault-location algorithms have been proposed previously for transposed lines, which may not always be the case in practice. Existing methods usually require measurements recorded from one or two terminals of the faulted line, which may not be always available. To complement existing methods, this paper proposes a novel, general fault-location method for untransposed lines using sparse wide-area measurements, which is also applicable to transposed lines. Phasor measurement units are utilized to obtain the sparse wide-area synchronized measurements, which may be captured from buses far away from the faulted line. This method fully considers inherent unbalances of untransposed lines, and fully models shunt capacitances of lines based on a distributed parameter line model. Optimal estimation theory is exploited to make the most of available measurements for enhanced estimation. The method is able to locate faults on single-circuit and double-circuit line configurations, and is immune to fault resistances. Another feature of this method is that it does not require the fault type to be known. Extensive simulation studies using the Electromagnetic Transients Program have been performed, and quite accurate results have been achieved.
机译:本文提出了一种在未换位的传输线上定位短路故障的新方法。先前已经提出了用于转置线的各种故障定位算法,在实践中可能并非总是如此。现有方法通常需要从故障线路的一个或两个端子记录的测量值,而这可能并不总是可用的。为了补充现有方法,本文提出了一种使用稀疏广域测量的未转置线路的通用故障定位新方法,该方法也适用于转置线路。相量测量单元用于获得稀疏的广域同步测量,可以从远离故障线路的总线上捕获到。该方法充分考虑了未调换线路的固有不平衡,并基于分布式参数线路模型完全建模了线路的并联电容。利用最佳估计理论来充分利用可用的测量值以进行增强估计。该方法能够在单回路和双回路线路配置上定位故障,并且不受故障电阻的影响。该方法的另一个特点是它不需要知道故障类型。使用电磁暂态程序进行了广泛的仿真研究,并获得了相当准确的结果。

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