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Model to estimate the trapping parameters of cross-linked polyethylene cable peelings of different service years and their relationships with dc breakdown strengths

机译:模型估算不同使用年限的交联聚乙烯电缆剥皮的捕集参数及其与直流击穿强度的关系

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摘要

In this study, an improved trapping/detrapping model was used to simulate the charge dynamics in cross-linked polyethylene peelings from different-year aged cables. Injection barrier of trapping parameters was estimated by the model fitted to experimental data for each type of sample. Moreover, dc breakdown tests were operated on those samples. It has been found that the dc breakdown strength of inner-layer samples is the lowest in cable sections with thicker insulation layer taken from high-voltage ac (HVAC) 220 kV service condition, whereas for the cable with thinner insulation from HVAC 110 kV, middle-layer samples have worst breakdown performance. This might be explained by the space charge issues under long-term HVAC condition. More importantly, a clear relationship between estimated model parameters, including injection barrier, trap depth and trap density, with the dc breakdown strength in each layer has been reported in this study.
机译:在这项研究中,使用改进的俘获/释放模型来模拟不同年份老化电缆的交联聚乙烯剥皮中的电荷动态。通过适合每种类型样品的实验数据的模型估算捕集参数的进样壁垒。此外,对这些样品进行了直流击穿测试。已经发现,在220 kV高压交流(HVAC)工作条件下,绝缘层较厚的电缆部分,内层样品的直流击穿强度最低,而对于110 kV的HVAC绝缘较薄的电缆,内层样品的直流击穿强度最低中层样品的击穿性能最差。这可能是由于长期HVAC条件下的空间费用问题所引起的。更重要的是,该研究报告了估计的模型参数(包括注入势垒,陷阱深度和陷阱密度)与每一层的直流击穿强度之间的明确关系。

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