平板腔体局部放电现象分析数值模型的优化

R. Candela, R. Schifani, P. Romano
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引用次数: 6

摘要

通过局部放电(PD)测量,可以研究高压元件绝缘失效的概率,从而发现缺陷。作者先前开发了一个数值模型,用于模拟嵌入环氧树脂的球形空隙中的PD活性,该模型适用于发散电场下的扁平腔。这很好地模拟了电机绝缘所遇到的实际工作条件。该模型考虑了所有几何参数和电气参数,并对对局部放电现象起基本作用的物理参数进行了细致的考察。特别地,采用了更精确的功函数公式和腔内电场的有限元分析方法。研究了一种再现放电现象不确定度的新方法。通过威布尔分析得到的概率函数分布得到了最好的结果。为了获得模型输出与实验PD数据的最佳拟合,采用了一种基于启发式算法的强拟合过程。该算法检测质量函数的最小值,该函数用于评估数值模型的PD模式与实验数据之间的距离。在描述了所采用的数值模型后,将实验数据与模拟数据进行了比较,并给出了评论和注释。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimisation of a numerical model for analysis of partial discharge phenomena in a flat cavity
The failure probability of the insulation in HV components can be studied through partial discharge (PD) measurements to detect defects. A numerical model, previously developed by the authors for the simulation of PD activity in a spherical void embedded in epoxy resin, is implemented for a flat cavity under a divergent electric field. This simulates very well the real working conditions encountered in the insulation of electrical machines. The model is developed taking into account all the geometric and electrical parameters, and a fine examination on physical parameters playing a fundamental role on the PD phenomenon is carried out. In particular, a more accurate formulation of the work function and a finite elements analysis (FEA) of the electric field inside the cavity has been applied. A new approach is investigated to reproduce the uncertainty of the discharge phenomenon. A probability function distribution, obtained by Weibull analysis, gains the best results. In order to obtain the best fitting of the model output to the experimental PD data, a strong procedure based on an heuristic algorithm is performed. This algorithm detects the minimum of a quality function that evaluates the distance between the PD patterns of the numerical model and of the experimental data. After a description of the numerical model adopted, a comparison between the experimental and the simulated data are presented together with comments and remarks.
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