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Space Charge Accumulation at Material Interfaces in HVDC Cable Insulation Part II—Simulations of Charge Transport

机译:HVDC电缆绝缘材料界面材料界面上的空间电荷累积 - 电荷运输的模拟

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摘要

Extruded high voltage direct current (HVDC) cable systems contain interfaces with poorly understood microscopic properties, particularly surface roughness. Modelling the effect of roughness on conduction in cable insulation is challenging, as the available results of macroscopic measurements give little information about microscopic charge distributions at material interfaces. In this work, macroscopic charge injection from interfaces is assessed by using a bipolar charge transport model, which is validated against a series of space charge measurements on cable peelings with different degrees of surface roughness. The electric field-dependent conduction and charge trapping effects stimulated by the injection current originating from rough surfaces are assessed. It is shown that by accounting for roughness enhanced charge injection with the parameters derived in part I of the paper, reasonable agreement between computed and measured results can be achieved at medium field strengths (10–40 kV/mm).
机译:挤出的高压直流(HVDC)电缆系统含有差异不良的界面,特别是表面粗糙度。根据宏观测量的可用结果,建模粗糙度对电缆绝缘中断的影响是具有挑战性的,因为宏观测量的可用结果提供了关于材料界面上的微观电荷分布的几乎信息。在这项工作中,通过使用双极电荷传输模型来评估来自接口的宏观电荷注入,该双极电荷传输模型是针对具有不同程度的表面粗糙度的电缆剥离的一系列空间电荷测量。评估由源自粗糙表面的喷射电流刺激的电场依赖的传导和电荷捕获效果。结果表明,通过在纸张第I部分中衍生的参数算是粗糙度增强的电荷注入,可以在介质场强(10-40kV / mm)之间实现计算和测量结果之间的合理达成。

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