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Investigation of the Thickness Effect on DC Breakdown Strength for HVDC Flexible Cable Insulation Associated with Space Charge

机译:与空间电荷相关的HVDC柔性电缆绝缘层厚度对直流击穿强度的影响研究

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Crosslinked polyethylene (XLPE) is the main insulation material in HVDC (high-voltage direct current) flexible cable. DC breakdown characteristics of XLPE are important indicators to determine operational safety. The accumulation of space charge could change the electric field distribution within the cable insulation layer, and could lead to insulation breakdown in severe cases. In response to these problems, this paper investigated on the breakdown strength and space charge characters of XLPE with different thicknesses. DC breakdown experiments were conducted for three different sorts of XLPE at positive and negative electric fields, where the thicknesses of the samples were 100 μm,200 μm,300 μm and 400 μm. Besides, the space charge measurements were carried out on 200 μm and 400 μm XLPE samples at 70kV/mm and 80kV/mm. The electric field distortion within the sample was calculated. The results show that the breakdown strength of XLPE decreases as the thickness of the XLPE increases. Power function was applied to describe the relationship between the breakdown strength and thickness. The homo charges injected from anode form packet-like charges which could move towards the cathode at high electric field. For thicker samples, more space charges are accumulated and there is a larger maximum electric field distortion. Therefore, the breakdown strength of thicker samples could be relatively lower than thinner samples.
机译:交联聚乙烯(XLPE)是HVDC(高压直流电)柔性电缆中的主要绝缘材料。 XLPE的直流击穿特性是确定操作安全的重要指标。空间电荷的累积可以改变电缆绝缘层内的电场分布,并且可能导致严重情况下的绝缘故障。为了应对这些问题,本文研究了不同厚度的XLP的击穿强度和空间电荷特征。在正极和负电场下对三种不同的XLPE进行直流击穿实验,其中样品的厚度为100μm,200μm,300μm和400μm。此外,在70kV / mm和80kV / mm处,在200μm和400μmXLPE样品上进行空间电荷测量。计算样品内的电场变形。结果表明,随着XLPE厚度的增加,XLPE的击穿强度降低。应用功率功能来描述击穿强度和厚度之间的关系。从阳极形式的包裹式电荷注入的同性量电荷可以向高电场移动朝向阴极移动。对于较厚的样品,累积更多的空间电荷,并且存在更大的最大电场失真。因此,较厚样品的击穿强度可以比较薄的样品相对低。

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