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Application of Dielectric Response Measurement on Power Cable Systems

机译:介电响应测量在电力电缆系统中的应用

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Water treeing is one of the factors leading to failure of medium voltage XLPE cables in long-term service. Increased moisture content inside oil-paper insulated cable is not desirable. To identify water tree degraded XLPE cables or oil-paper cables with high moisture content, diagnostic tests based on dielectric response (DR) measurement in time and frequency domain are used. Review of individual DR measurement techniques in the time and frequency domains indicates that measurement of one parameter in either domain may not be sufficient to reveal the status of the cable insulation. But a combination of several DR parameters can improve diagnostic results with respect to water trees present in XLPE cables or increased moisture content in oil-paper cables. DR measurement is a very useful tool that reveals average condition of cable systems. However, it is unlikely that DR measurement will detect few, but long water trees. In addition, DR cannot locate the defect or water tree site within the cable system. Combination of DR and partial discharge (PD) measurements can improve diagnostic results with respect to global and local defects. However, it is doubtful whether PD test can identify the presence of water trees inside a cable in a non-destructive manner. Further research is needed for more detailed conclusions regarding the status of a particular insulation and for predicting the remaining life of the insulation system.
机译:长期使用中,水树是导致中压XLPE电缆故障的因素之一。不希望增加油纸绝缘电缆内部的水分含量。为了识别水分含量高的水树降解的XLPE电缆或油纸电缆,使用了基于时域和频域介电响应(DR)测量的诊断测试。对时域和频域中的单个DR测量技术的回顾表明,在任一域中对一个参数进行的测量可能不足以揭示电缆绝缘的状态。但是,几个DR参数的组合可以改善XLPE电缆中存在的水树或油纸电缆中水分含量增加的诊断结果。 DR测量是显示电缆系统平均状况的非常有用的工具。但是,DR测量不太可能检测到很少但很长的水树。此外,DR无法在电缆系统中定位缺陷或水树部位。 DR和局部放电(PD)测量的组合可以改善整体和局部缺陷的诊断结果。但是,PD测试能否以非破坏性的方式识别电缆中是否存在水树,令人怀疑。需要针对特定​​绝缘状态的更详细结论以及预测绝缘系统的剩余寿命进行进一步研究。

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