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A New Fault-Location Algorithm for Extra-High-Voltage Mixed Lines Based on Phase Characteristics of the Hyperbolic Tangent Function

机译:基于双曲正切函数相位特性的超高压混合线路故障测距新算法

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摘要

A new fault-location algorithm for extra-high-voltage mixed lines based on phase characteristics of the hyperbolic tangent function is proposed. This paper takes overhead-cable-overhead mixed lines for example. The faulted section identification functions for overhead cable connections described by the hyperbolic tangent are developed separately when faults occur on the first overhead line, the middle cable, and the last overhead line. When a fault occurs on different sections, the faulted section identification functions appear as obviously different phase characteristics according to the phase characteristics of the hyperbolic tangent function. Thus, the faulted section can be identified. The fault location can be therefore accurately determined with the voltage and current positive-sequence fault components on both ends of the faulted section. Simulations and calculations with PSCAD and MATLAB show that the fault-location algorithm is correct and accurate.
机译:提出了一种基于双曲正切函数相位特性的超高压混合线路故障测距算法。本文以架空电缆-架空混合线为例。当第一根架空线,中间电缆和最后一根架空线发生故障时,由双曲线切线描述的用于架空电缆连接的故障部分识别功能将单独开发。当故障发生在不同的断面时,根据双曲正切函数的相位特性,故障断面识别函数表现为明显不同的相位特性。因此,可以识别出故障部分。因此,可以通过故障部分两端的电压和电流正序故障分量来准确确定故障位置。用PSCAD和MATLAB进行的仿真和计算表明,故障定位算法是正确和准确的。

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