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Research on aging parameters of XLPE cable based on isothermal relaxation current

机译:基于等温弛豫电流的交联聚乙烯电缆老化参数研究

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Dielectric response is closely related to the aging status of XLPE cables, and the isothermal relaxation current (IRC) has been applied to find out the change trend of cable insulation as a non-destructive method. In this paper, 4 groups of XLPE cable samples (16 cables in total) are artificially acceleratedly aged with different time interval at 120, 140 and 160°C, respectively, and their IRC curves are measured by a micro-current device. The results show that with the increasing aging time, IRC curves decrease slower and the absolute values of steady current become larger. In order to quantify the aging characteristics of XLPE cables, the trap parameters calculation theory is employed to work out the peak trap level of different polarization types. The experiment results show that the peak trap level of bulk polarization (type 1) remains stable and is around 0.76eV which is considered to be independent of aging degree. As the aging time increases, the peak trap level of amorphous crystalline relaxation (type 2), which is from 0.785eV to 0.82eV, increases at low temperature (120°C) due to the breaking of molecular chain and decreases at high temperature (more than 140°C) due to the over cross-linking. The peak trap level of impurities interface relaxation (type 3) is highly influenced by aging temperature, which is most sensitive to the aging degree of power cable. It is considered that IRC can be used as a practical way to judge cable insulation in the future.
机译:介电响应与XLPE电缆的老化状态密切相关,已应用等温松弛电流(IRC)作为无损方法来找出电缆绝缘的变化趋势。本文分别对4组XLPE电缆样本(共16根电缆)分别在120、140和160°C下以不同的时间间隔进行人工加速老化,并通过微电流装置测量它们的IRC曲线。结果表明,随着老化时间的增加,IRC曲线下降速度变慢,稳态电流的绝对值变大。为了量化XLPE电缆的老化特性,采用陷阱参数计算理论来计算不同极化类型的峰值陷阱电平。实验结果表明,体极化(1型)的峰值陷阱能级保持稳定,约为0.76eV,这与老化程度无关。随着老化时间的增加,非晶态晶体弛豫(类型2)的峰陷阱能级(从0.785eV到0.82eV)由于分子链的断裂在低温(120°C)下增加,而在高温下则下降(超过140°C)。杂质界面弛豫的峰值陷阱能级(类型3)受老化温度的影响很大,而老化温度对电力电缆的老化程度最敏感。人们认为IRC可以用作将来判断电缆绝缘的一种实用方法。

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