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Frequency dependence of breakdown performance of XLPE with different artificial defects

机译:具有不同人工缺陷的XLPE击穿性能的频率依赖性

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摘要

In this paper, the effect of the applied field frequency on the breakdown performances of cross-linked polyethylene (XLPE) insulation was investigated. Three kinds of artificial defects, namely an inserted needle, a needle void and a knife void, were introduced into a 10 kV commercial XLPE cable, to simulate real defects that may be introduced during on-site service. Breakdown tests were conducted in transformer oil at room temperature using a frequency-tuned resonant test system in a frequency range from 20 to 300 Hz. It was found that the breakdown voltage of specimens with the inserted needle was sensitive to the applied field frequency, and the breakdown voltage showed a maximum value at about 240 Hz. However, for other two kinds of specimens with the needle void and knife void, the breakdown behavior shows a weak relation with the applied field frequency. The breakdown voltages of the specimens with the needle and void are 25 kV and 20 kV respectively. It was further found that side channels appeared on the flank of the main channel of the breakdown path in the specimen with the inserted needle, and the frequency dependence of fractal dimension D of the side channel in the breakdown path are similar to that of electrical trees before breakdown, which may consequently lead to the maximum value in the experimental results.
机译:本文研究了施加频率对交联聚乙烯绝缘性能的影响。在10 kV商用XLPE电缆中引入了三种人造缺陷,即插入的针,针孔和刀孔,以模拟可能在现场服务期间引入的实际缺陷。使用频率范围为20至300 Hz的调谐谐振测试系统,在室温下在变压器油中进行击穿测试。发现插入针头的样品的击穿电压对施加的场频敏感,并且击穿电压在约240Hz处显示出最大值。但是,对于另外两种带有针孔和刀孔的样品,其击穿行为与施加的电场频率之间的关系较弱。带针和空隙的样品的击穿电压分别为25 kV和20 kV。进一步发现,在插入针头的情况下,在样品击穿通道的主通道侧面出现侧通道,击穿通道中侧通道的分形维数D的频率依赖性与电树相似。击穿之前可能会导致实验结果达到最大值。

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