首页> 外文期刊>IEEE Transactions on Electromagnetic Compatibility >Electromagnetic Time Reversal as a Correlation Estimator: Improved Metrics and Design Criteria for Fault Location in Power Grids
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Electromagnetic Time Reversal as a Correlation Estimator: Improved Metrics and Design Criteria for Fault Location in Power Grids

机译:作为相关估计的电磁时间反转:改进了电网故障位置的度量和设计标准

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摘要

Recently published papers have proved the effectiveness of electromagnetic time reversal (EMTR) in locating the position of faults such as phase-to-ground shunt connections in power grids. EMTR directly transposes the idea of focusing energy back to its source introduced in original time-reversal (TR) methods. The current interpretation of EMTR, based on metrics measuring energy or peak-amplitude of focusing, is shown to suffer from ambiguities that increase the risk of inaccurate fault location. After pointing out under what conditions TR focusing occurs, an original frequency-domain reformulation of EMTR is introduced, showing that EMTR should more accurately be interpreted as a correlation estimator. New metrics based on this observation are introduced, taking into account the inhomogeneous transmission of electrical energy throughout complex networks, enabling a direct quantitative evaluation of the likelihood of locating a fault. Extensive numerical simulations confirm that the proposed formulation systematically improves the reliability of EMTR location estimates when faults occur in power grids of realistic complexity, highlighting the accrued risk that comes with the use of metrics that measure the scale of TR focusing rather than its quality.
机译:最近公布的论文证明了电磁时间逆转(EMTR)的有效性在为电网中定位诸如相对地分流连接的故障位置。 EMTR直接将聚焦能量的想法转移回其原始时间逆转(TR)方法引入的源。基于测量能量或聚焦峰值幅度的度量的EMTR的目前解释被认为遭受增加了含量不准确故障位置的风险的歧义。在发生在TR焦点发生的条件下指出之后,引入了EMTR的原始频域重构,表明EMTR应该更准确地解释为相关估计器。引入了基于该观察的新指标,考虑到在整个复杂网络中的电能的不均匀传播,从而实现了对定位故障的可能性的直接定量评估。广泛的数值模拟确认当拟议的制定系统地提高了EMTR位置估计的可靠性,何时发生故障,当逼真复杂性的电网发生故障,突出了使用测量TR聚焦等级而不是其质量的度量来源的应计风险。

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