High Impedance Fault Identification in TCSC-Compensated Power Transmission Lines

M. H. Musa
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Abstract

The conventional distance relaying scheme performs poorly under the presence of Thyristors-controlled series capacitors “TCSC”, and during the high impedance fault “HIF”. TCSC provide a variable impedance during an internal/external fault and HIF is undetectable by the conventional overcurrent relaying due to low-current amplitude with non-linear behavior. Therefore, this paper presents a new Method for identifying the high impedance fault in TCSC-compensated transmission line. It is use the square error ration of the current signals during the fault period and current signals during the safe operating period for extracting the fault. The cumulative sum is being used for enlarging the fault features and then output index is obtained in order to perform the high impedance fault. The proposed method has been tested under different fault circumstances such as multiple fault locations, and multiple fault inception time. Moreover, fault happened nearby the terminal, power flow change, and faults in the presence of noise are also being considered. The test results have shown that the proposed method is good in term of time response, and then it is more appropriate for high impedance fault in TCSC-compensated power line.
tcsc补偿输电线路的高阻抗故障识别
传统的距离继电保护方案在晶闸管控制串联电容“TCSC”存在和高阻抗故障“HIF”期间表现不佳。TCSC在内部/外部故障期间提供可变阻抗,由于具有非线性行为的低电流幅值,传统过流继电器无法检测到HIF。为此,本文提出了一种新的tcsc补偿输电线路高阻抗故障识别方法。利用故障期电流信号与安全运行期电流信号的误差平方比进行故障提取。利用累积和放大故障特征,得到输出指标,实现高阻抗故障。该方法已在多个故障位置和多个故障发生时间等不同故障情况下进行了测试。此外,还考虑了终端附近发生的故障、潮流的变化以及存在噪声的故障。试验结果表明,该方法具有较好的时间响应性,更适用于tcsc补偿电力线中的高阻抗故障。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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