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Research on influence of high-voltage cable un-homogeneities on process of short waves distribution

机译:高压电缆不均匀性对短波分布过程影响的研究

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The partial discharges (PDs) inside of high-voltage cable insulation negatively influence cable service lifes-pan. Therefore timely detection and localization of affected areas with the weakened electric insulation is a vital question, in particular-according to measured values of PD parameters before they reach the dangerous stage of their development. Electrical cable is a circuit with the distributed parameters for current and voltage waves, initiated by local PD which changes their starting values with time. These changes can be taken as informative parameters for solving problems of localization of the defect and evaluation of dangers to cable's performance. Clear and detailed understanding of PD pulse distribution features in power cables is the basis for correctly solving cable diagnostics tasks with non-destructive approaches. This article uses the mathematical model of a power cable on the premises of cable equations. The model allows for modeling of wave processes in a non-uniform electric circuit (at sudden change of longitudinal parameters) in view of repeated reflection of PD waves from the ends and un-homogeneities of an electric cable. Results of mathematical modeling were compared to the data received from physical model of 110kV XLPE electric cable. The cable physical model is realized with the help of the chained circuit consisting of 15 quad-poles. This document shows results of measurements and modeling of wave process caused by PD. Also, details of the wave process as dependent on time and frequency, and practical use of measurements of PD for cable insulation control, are discussed. Practical measurements show high degree of accuracy with regards to the data generated by theoretical model analysis.
机译:高压电缆绝缘层内部的局部放电(PDs)对电缆使用寿命有负面影响。因此,及时检测和定位受电绝缘减弱的受影响区域是一个至关重要的问题,尤其是根据PD参数在其发展到危险阶段之前的测量值。电缆是一种电路,其电流和电压波的分布参数由局部PD发起,该局部PD随时间改变其起始值。这些变化可以作为解决缺陷局部化和评估电缆性能危险的有用信息。对电力电缆中PD脉冲分布特征的清楚而详细的了解是使用非破坏性方法正确解决电缆诊断任务的基础。本文在电缆方程式的前提下使用电力电缆的数学模型。考虑到PD波从电缆末端的反复反射和电缆的不均匀性,该模型允许对非均匀电路中的波过程进行建模(纵向参数突然改变)。将数学建模的结果与从110kV XLPE电缆的物理模型获得的数据进行比较。电缆物理模型是在由15个四极组成的链接电路的帮助下实现的。该文档显示了由PD引起的波浪过程的测量和建模结果。此外,还讨论了取决于时间和频率的波过程的细节,以及用于电缆绝缘控制的PD测量的实际应用。对于理论模型分析生成的数据,实际测量显示出很高的准确性。

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