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Breakdown Characteristics of Water Tree Defects Under 0.1Hz Cosine Square Wave Voltage

机译:0.1Hz余弦方波电压下水树缺陷的击穿特性

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The cosine square wave voltage of 0.1Hz is widely used in the power cable withstand voltage test due to the small test capacity requirement. Water tree is an important factor leading to cable insulation failure. Its growth is sensitive to voltage frequency. The higher the voltage frequency, the faster the growth. Whether the water tree defect in the cable can be found in the withstand voltage test under the cosine square wave voltage of 0.1Hz has not been reported at present. Therefore, based on the models and methods recommended by CIGRE, under the action of 10kHz high-frequency high-voltage power supply, XLPE flake defect models with different water tree lengths were prepared. The water tree length proportion for about 30% of the XLPE tablet thickness, 60 % And 90%. Under the effect of 3U0 equivalent field strength, the breakdown characteristics of water trees under the effect of 0.1Hz cosine square wave voltage were measured, including breakdown voltage, breakdown time, and channel topography characteristics. The research results show that the 3U0 equivalent field strength 0.1Hz cosine square wave voltage withstand voltage test can find of 90% water tree length proportion insulation defects, but has no obvious effect on 30% and 60% water tree length proportion defects.
机译:为0.1Hz的余弦方波电压被广泛用于电力电缆耐电压试验,由于小容量测试要求。水树是导致电缆绝缘失效的一个重要因素。其增长是电压频率敏感。电压越高频率,更快的生长。是否在电缆中的水树缺陷可以为0.1Hz的余弦方波电压下的耐电压试验中找到尚未报道目前。因此,基于由CIGRE推荐,10kHz的高频高电压电源的作用下的模型和方法,交联聚乙烯片状缺损模型具有不同的水树长度制备。水树长度比例为XLPE片剂厚度的约30%,60%和90%。下的3U0等效场强度的影响,测定的为0.1Hz余弦方波电压的作用下水树击穿特性,包括击穿电压,击穿时间,和频道的地形特征。研究结果表明,3U0等效场强为0.1Hz余弦方波电压耐压测试可以发现90%的水树长度比例绝缘缺陷,但对30%和60%的水树长度比例缺陷无明显影响。

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