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Synchronized Measurements-Based Algorithm for Short Transmission Line Fault Analysis

机译:基于同步测量的短输电线路故障分析算法

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摘要

A new numerical algorithm for the analysis of single line to ground faults on short overhead transmission lines is presented in this paper. It is based upon synchronized sampling at two line ports, and an accurate fault model including the arcing phenomena and tower footing resistance at the fault point. The core of the algorithm is an efficient nonrecursive parameter estimation method. A dynamic arc model is included in the fault model to represent the arc’s interaction with the external power network. The algorithm accurately estimates the arc voltage amplitude, tower footing resistance, and the fault location, simultaneously. The algorithm is derived in the time domain, and is based on the synchronized acquisition of currents and voltages at both line terminals. Case studies based on simulated data are presented to demonstrate the effectiveness of the new method. In particular, the sensitivity of the proposed algorithm to synchronization errors, harmonics, line capacitance, and fault resistance were explored with lumped, distributed, transposed, and untransposed line models.
机译:提出了一种新的数值算法,用于分析架空短输电线路的单线接地故障。它基于两个线路端口上的同步采样,以及一个精确的故障模型,其中包括故障点处的电弧现象和塔基电阻。该算法的核心是高效的非递归参数估计方法。故障模型中包含动态电弧模型,以表示电弧与外部电网的相互作用。该算法可同时准确估算电弧电压幅度,塔底电阻和故障位置。该算法在时域中推导,基于两个线路端子上电流和电压的同步采集。提出了基于模拟数据的案例研究,以证明新方法的有效性。特别是,通过集总,分布,转置和未转置的线模型,探讨了所提算法对同步误差,谐波,线电容和故障电阻的敏感性。

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