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Trapping parameters comparison between cable sections from different service conditions by a new trapping-detrapping model

机译:通过新的诱捕-诱捕模型比较不同服务条件下的电缆段之间的诱捕参数

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Space charge formation will cause electric field enhancement at certain location in the polymeric materials, especially under HVDC insulation condition. In our previous works, a model has been developed which is suitable for analysing the space charge data from depolarization test to calculate the material trapping parameters. In the present paper, two cross-linked polyethylene (XLPE) cables, taken from HVAC service condition of 220kV for 12 years and for 8 years, were peeled as 100-200μm films from the outer to inner layer of insulation. Through the comparison between trapping parameters estimated from our model, it has been found that samples from inner insulation layers for both cables have the deepest trap depth and the greatest deep trap density, indicating samples from inner layers have the severest ageing.
机译:空间电荷的形成将在聚合物材料中的某些位置引起电场增强,尤其是在HVDC绝缘条件下。在我们以前的工作中,已经开发了一个模型,该模型适用于分析来自去极化测试的空间电荷数据,以计算材料的俘获参数。在本文中,从绝缘层的外层至内层将两根交联聚乙烯(XLPE)电缆以100-200μm的薄膜剥落,这些电缆取自220kV的HVAC工作条件分​​别为12年和8年。通过比较我们的模型估计的捕获参数,发现两条电缆的内绝缘层样本都具有最深的捕获深度和最大的深层捕获密度,表明内层的样本老化最严重。

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