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Electrical treeing characteristics in XLPE power cable insulation in frequency range between 20 and 500 Hz

机译:频率范围为 20 至 500 Hz 的交联聚乙烯电力电缆绝缘中的电气树特性

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摘要

Electrical treeing is one of the main reasons for long term degradation of polymeric materials used in high voltage ac applications. In this paper we report on an investigation of electrical tree growth characteristics in XLPE samples from a commercial XLPE power cable. Electrical trees have been grown over a frequency range from 20 Hz to 500 Hz and images of trees were taken using CCD camera without interrupting the application of voltage. The fractal dimension of electric tree is obtained using a simple box-counting technique. Contrary to our expectation it has been found that the fractal dimension prior to the breakdown shows no significant change when frequency of the applied voltage increases. Instead, the frequency accelerates tree growth rate and reduces the time to breakdown. A new approach for investigating the frequency effect on trees has been devised. In addition to looking into the fractal analysis of tree as a whole, regions of growth are being sectioned to reveal differences in terms of growth rate, accumulated damage and fractal dimension.
机译:电气树是高压交流应用中使用的聚合物材料长期退化的主要原因之一。在本文中,我们报告了对商用交联聚乙烯电力电缆交联聚乙烯样品中电树生长特性的调查。电气树的生长频率范围为20 Hz至500 Hz,使用CCD相机拍摄树木图像,而不会中断电压的施加。电树的分形维数是使用简单的盒子计数技术获得的。与我们的预期相反,已经发现当施加电压的频率增加时,击穿前的分形维数没有显着变化。相反,频率加快了树木的生长速度并减少了分解时间。已经设计了一种研究频率对树木影响的新方法。除了研究整个树木的分形分析外,还对生长区域进行了切片,以揭示生长速度、累积损伤和分形维数方面的差异。

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