An approach to develop a partial discharge investigation

N. Kolev, E. Gadjeva, M. Danikas, N.R. Gourov
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引用次数: 20

Abstract

Partial discharge represents a physical phenomenon, in which discharges are involved in electrically weak regions of solid insulation materials (most often gaseous or liquid inclusions). They cause damage of the insulation and often start from the voids enclosed in it and/or at interface defects. The time, during which technical insulation is still in good operation condition, is of great practical interest. The same is valid for effects of partial discharge resulting in failure of the dielectric much before the expected life-time. For this reason this topic is subjected to many investigations. The present paper treats discharge phenomena inside enclosed cylindrical cavities. An electrical model has been developed for the tested dielectric. The model has been built using the tools of OrCAD's PSpice software for analogue design and simulation. Experimental results have been compared with the model data. The experimental data obtained from testing of polyethylene samples with artificially created cylindrical voids have been used for this comparison. The electrode configuration used is plane-plane, and the electrodes are parallel to the ends of the cylindrical void. The parameters of the electrical model have been calculated by means of data taken from the experimental set-up used.
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一种开展局部排放调查的方法
局部放电是一种物理现象,其中放电涉及固体绝缘材料的电弱区域(最常见的是气体或液体夹杂物)。它们会造成绝缘的损坏,通常是从绝缘内部和/或界面缺陷处的空隙开始的。在此期间,技术绝缘仍处于良好的运行状态,具有很大的实际意义。这同样适用于部分放电的影响,导致电介质在预期寿命之前失效。由于这个原因,这个话题受到许多调查。本文研究了封闭圆柱腔内的放电现象。已经为所测试的电介质建立了一个电学模型。利用OrCAD的PSpice软件进行模拟设计和仿真,建立了模型。实验结果与模型数据进行了比较。从聚乙烯样品的测试中获得的实验数据与人工制造的圆柱形空隙被用于这个比较。所使用的电极结构为平面-平面,电极平行于圆柱形空隙的两端。电学模型的参数是根据所用实验装置的数据计算出来的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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