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Illuminations to the Interface Polarization Characteristics of Water-Tree Aged Cables Based on Polarization and Depolarization Current Method

机译:基于极化和去极化电流法的水树老化电缆界面极化特性的解释

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In order to achieve effective diagnosis of insulation state of water-tree aged XLPE cables, this paper investigates the variation of conduction current of water-tree aged cables in the polarization process, and analyzes the asymmetrical interface polarization characteristics. The cable samples with different water tree aging time were taken the PDC test. According to the test results, the conduction current of aged cables extracted from the PDC test emerges a peak value, and this value gets more apparent when deterioration of water-tree aged cables are severer. Analysis shows the polarization process of water-tree aged cables is fast and the depolarization process is slow due to the nonlinear variation of relative dielectric constant and conductivity of water tree region, leading to appearance of the conduction current peak. So this paper presents K value to show the asymmetrical interface polarization characteristics of water-tree aged cables, and diagnose insulation performance of cables.
机译:为了实现水树XLPE电缆的有效诊断,本文研究了极化过程中水树老化电缆的传导电流的变化,并分析了不对称界面偏振特性。采用不同水树老化时间的电缆样品进行PDC测试。根据测试结果,从PDC测试中提取的老化电缆的导通电流出现峰值,当水树老化电缆的恶化是严重的时,该值变得更加明显。分析表明水树老化电缆的偏振过程快速,并且由于水树区域的相对介电常数和导电性的非线性变化,去极化过程缓慢,导致导通电流峰值的外观。因此,本文呈现K值,以显示水树老化电缆的不对称界面偏振特性,并诊断电缆的绝缘性能。

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