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Location of DC Line Faults in Conventional HVDC Systems With Segments of Cables and Overhead Lines Using Terminal Measurements

机译:使用终端测量在具有电缆段和架空线段的常规HVDC系统中DC线路故障的位置

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摘要

This paper presents a novel algorithm to determine the location of dc line faults in an HVDC system with a mixed transmission media consisting of overhead lines and cables, using only the measurements taken at the rectifier and inverter ends of the composite transmission line. The algorithm relies on the traveling-wave principle, and requires the fault-generated surge arrival times at two ends of the dc line as inputs. With accurate surge arrival times obtained from time-synchronized measurements, the proposed algorithm can accurately predict the faulty segment as well as the exact fault location. Continuous wavelet transform coefficients of the input signal are used to determine the precise time of arrival of traveling waves at the dc line terminals. Two possible input signals–the dc voltage measured at the converter terminal and the current through the surge capacitors connected at the dc line end–are examined and both signals are found to be equally effective for detecting the traveling-wave arrival times. Performance of the proposed fault-location scheme is analyzed through detailed simulations carried out using the electromagnetic transient simulation software PSCAD. The impact of measurement noise on the fault-location accuracy is also studied in this paper.
机译:本文提出了一种新颖的算法,该算法可仅使用在复合输电线路的整流器和逆变器端进行的测量来确定由架空线和电缆组成的混合传输介质的HVDC系统中直流线路故障的位置。该算法基于行波原理,并且需要故障产生的浪涌到达时间在直流线路的两端作为输入。利用从时间同步测量获得的准确的浪涌到达时间,该算法可以准确地预测故障段以及确切的故障位置。输入信号的连续小波变换系数用于确定行波到达直流线路端子的精确时间。检查了两个可能的输入信号-在转换器端子处测量的直流电压和通过连接在直流线路端的浪涌电容器的电流-并发现这两个信号对于检测行波到达时间均有效。通过使用电磁暂态仿真软件PSCAD进行的详细仿真,分析了提出的故障定位方案的性能。本文还研究了测量噪声对故障定位精度的影响。

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