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Defect Diagnosis of the Cable Insulating Materials by Partial Discharge Statistical Analysis

机译:局部放电统计分析法诊断电缆绝缘材料的缺陷

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We made three layers of XLPE and arrayed non void sample on the upper layer and the lower layer. But we put air void and copper particles in the middle layer. After heating this to room temperature, 50°C, and 80°C in silicone oil, I studied the characteristics of partial discharge increasing electric voltage from inception voltage to breakdown. We obtained the following results by researching partial discharge which was occurred in an insulation material of XLPE, through partial discharge statistical analysis. When the K-means clustering was carried out at 9 kV for void discharge characteristic, discharge amount on the low temperature was small, but if temperature discharge amount on 80°C increased 5.7 times more than on room temperature as electric charge injection became easier. When 5 kV was applied to copper particles, K-means was conducted, and the temperature changed from 50 °C to 80 °C, amount of charge at positive polarity increased 20.3 % and amount of charge at negative polarity increased 54.9 %. On the kurtosis and skewness analysis, positive polarity and negative polarity showed clustering distribution of a straight line.
机译:我们制作了三层XLPE,并在上层和下层上排列了无空隙样品。但是我们在中间层放置了空隙和铜颗粒。在硅油中将其加热至室温,50°C和80°C之后,我研究了局部放电的特性,该特性使电压从起始电压升高到击穿。通过局部放电统计分析,研究了XLPE绝缘材料中发生的局部放电,得出以下结果。当以9kV进行K均值聚类以实现空隙放电特性时,低温下的放电量较小,但是如果电荷注入变得容易,则在80℃下的温度放电量比室温下增加5.7倍。当对铜颗粒施加5kV的电压时,进行K-均值,并且温度从50℃变为80℃,正极性的电荷量增加20.3%,负极性的电荷量增加54.9%。在峰度和偏度分析上,正极性和负极性显示直线的聚类分布。

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