老化对PILC电缆极化电流和返回电压的影响

J. Crine, V. Buchholz, M. Colwell, S. Cherukupalli, Boaz Bernstein
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引用次数: 3

摘要

电缆的状态评估是许多公用事业的关键因素,本文致力于评估一些新的诊断技术,使用户能够有效地管理他们的电缆资产。我们使用不同的电学和化学技术来测量纸浸渍绝缘的电学和介电性能。采用等温松弛电流(IRC)、LIpATEST泄漏电流试验和回电压法(RVM)对三根全长现场老化的PILC电缆进行了无损电学试验。对取自同一样品的纸带和油的小样本进行了化学测试。它们是:介电分析,傅里叶变换红外(FTIR)光谱和水分含量分析。电气技术对电缆进行了一致的排名,即一根使用了23年的电缆似乎比较老(34年)和较年轻(4年)的电缆老化更严重。这可能是用FTIR光谱在23年前的电缆油中检测到的酸来解释的。虽然需要更多电缆的更多数据,但已测试的技术似乎可以评估PILC电缆的绝缘状况。在9 ~ 40米长的电缆样品上进行的电气测量对样品长度高度敏感。还讨论了现有商用测试设备的局限性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of aging on polarization currents and return voltage measured in PILC cables
The condition assessment of PILC cables is a crucial factor for many utilities and this paper is devoted to the evaluation of some new diagnostic techniques enabling users to effectively manage their PILC cable assets. We used different electrical and chemical techniques to measure the electrical and dielectric properties of paper-impregnated insulation. The non-destructive electrical tests performed on three full-length field-aged PILC cables were : the isothermal relaxation current (IRC), the LIpATEST leakage current test and the return voltage method (RVM). Chemical tests were performed on small samples of paper tapes and oil taken from the same samples. They were : dielectric analysis, Fourier transform infra red (FTIR) spectroscopy and moisture content analysis, The electrical techniques ranked the cables consistently, that is one cable aged 23 years seemed to be more severely aged than the older (34 years) and younger (4 years) cables. This could possibly be explained by the acids detected in the oil of the 23 year old cable using FTIR spectroscopy. Although more data on more cables would be needed it already appears that the tested techniques could assess the condition of the insulation of PILC cables. It was observed that the electrical measurements performed on cable samples 9 to 40 meter long were highly sensitive to the sample length. The limits of the available commercial testing equipment are also discussed.
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