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The relationship between partial discharge behavior and the degradation of 10 kV XLPE cable joints

机译:10 kV XLPE电缆接头的局部放电行为与劣化的关系

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The failure rate of XLPE (Cross-linked polyethylene) cable joints is higher than that of cable in distribution systems due to bad environmental conditions, improper installation, and aging. To evaluate the failure and degradation of a cable joint via partial discharge (PD) detection, a 10kV XLPE cable joint was selected as the experimental sample, which was found partial discharge by field testing under damped AC voltage. An accelerated degradation experimental platform was set up for the 10 kV cable joint to simulate the cable operating conditions in the laboratory, and the PD behavior was monitored using a high frequency current transformer under different voltages and currents. The results indicate that the PD behavior is clearly affected by the voltage, current and aging time for the air-gap defect inside the joint. The degradation of the XLPE cable joint can be well characterized by the PD trend. Based on these results, a parameter is proposed for joints condition evaluation, which is the ratio of the PD magnitude between an interval time and named as a significant growth factor.
机译:由于环境条件不佳,安装不当,衰老,XLPE(交联聚乙烯)电缆接头的故障率高于配电系统中的电缆。为了通过局部放电(PD)检测来评估电缆接头的故障和降解,选择10kV XLPE电缆接头作为实验样品,发现通过损坏的AC电压下的现场测试偏出。设置了加速的降解实验平台,为10 kV电缆接头设定,以模拟实验室中的电缆运行条件,并且在不同的电压和电流下使用高频电流互感器监测PD行为。结果表明,PD行为明显受关节内部气隙缺陷的电压,电流和老化时间的影响。 XLPE电缆接头的劣化可以通过PD趋势进行很好的特征。基于这些结果,提出了一个参数的参数,用于接头条件评估,这是间隔时间之间的Pd幅度与显着的生长因子之间的比率。

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