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Analysis of low-frequency dielectric loss of XLPE cable insulation based on extended Debye model

机译:基于扩展德拜模型的XLPE电缆绝缘低频介电损耗分析

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Dielectric response technology is an effective method on state detection of dielectric materials. However, when the technology is employed to evaluate the aging extent of the cable, the interpretation of the microscopic mechanism, which leads to changes in the dielectric loss factor spectrum, is lacking in the research. It also does not refine the frequency range with strong polarization loss caused by defects, such as water trees and impurities. In this paper, the loss characteristics of XLPE cable insulation at low frequencies were studied. First, the frequency domain parameters were obtained by the time–frequency domain dielectric conversion principle through the polarization current measurement. Second, the polarization loss and conductivity loss based on the extended Debye model were effectively distinguished. Finally, the frequency domain dielectric spectrum of polarization loss caused by water treeing defects was extracted and discussed. The research results show that in the low frequency range, the conductivity loss and polarization loss of the XLPE cable increase as the aging degree of the cable deepens. Among them, the contribution of polarization loss to the overall loss is gradually increasing. At the same time, the polarization loss (tan δ p 3 ) caused by defects, such as water trees and impurities, inside the cable insulation has an obvious effect in the ultra-low frequency band. As the degree of aging increases, the extreme value of tan δ p 3 increases, and it moves to higher frequencies.
机译:介电响应技术是介电材料的状态检测有效方法。然而,当该技术用于评估电缆的老化程度时,在研究中缺乏对介电损耗因子谱的变化的微观机理的解释。它还不会细化频率范围,缺陷引起的偏振损失,例如水树和杂质。本文研究了低频下XLPE电缆绝缘的损耗特性。首先,通过偏振电流测量通过时频域介电转换原理获得频域参数。其次,有效地区分基于扩展德拜德模型的偏振损耗和电导率损失。最后,提取并讨论了由水树林缺陷引起的偏振损失的频域介电谱。研究结果表明,在低频范围内,随着电缆的老化程度加深的老化程度,XLPE电缆的电导率损耗和偏振损耗增加。其中,极化损失对整体损失的贡献逐渐增加。同时,由缺陷(如水树和杂质)引起的偏振损失(TANδP3),在电缆绝缘体内具有在超低频带中具有明显的效果。随着老化程度的增加,TanδP3的极值增加,并且它移动到更高的频率。

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