电阻抗
断层(地质)
宽带
介电谱
故障检测与隔离
电子工程
高阻抗
工程类
阻抗参数
电压
声学
电气工程
计算机科学
电信
物理
地质学
地震学
量子力学
执行机构
电化学
电极
作者
Bangle He,Jialiang Yuan,Wang Chenyuan,Yunjie Zhou,Chen Runtian,Ting Ye
标识
DOI:10.1109/icpre55555.2022.9960462
摘要
Aiming at the difficulty of fault detection of high-voltage single-core cables, a new method of cable fault detection based on broadband impedance spectroscopy is studied. Firstly, the relationship between the wave impedance and the distributed parameters is deduced from the distributed parameter model theory of the cable, so as to obtain the key factors affecting the impedance. Then, the broadband impedance spectroscopy of the cable is measured by the linear resonance technique, and the characteristic data is analyzed and extracted from the impedance spectroscopy to obtain the relevant unknowns of the fault defect, so as to realize the cable fault detection. A 220kV cable fault is detected, and the analysis results show that the broadband impedance spectroscopy analysis can detect the cable insulation defects, and the fault location accuracy meets the engineering requirements. The given method can provide a technical reference for fault detection of transmission cables.
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