A method for the measurement of leakage current due to surface discharge at the oil-pressboard interface

H. Zainuddin, P. M. Mitchinson, P. Lewin
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引用次数: 4

Abstract

Surface tracking is the conducting path formed on the surface of an insulation material as a result of surface currents. Tracking has commonly been associated with solid insulation in air such as overhead line insulators but is now recognized to occur at the oil-pressboard insulation interface inside large transformers. The surface current is effectively the drift of charge under the action of an electric field which may be either the general electric field or a locally enhanced field developed around a space charge. A needle-bar configuration has been developed to promote surface tracking under controlled conditions at the oil-pressboard interface without surface flash-over or breakdown. This method is used to study the leakage current associated with surface discharge applied from a high voltage source on the oil-pressboard interface. This paper outlines the experimental set-up and presents results which compare the measured current against the corresponding partial discharges. Subsequently a mechanism describing the process by which leakage current is formed is proposed
一种测量油压板界面表面放电引起的泄漏电流的方法
表面跟踪是由于表面电流在绝缘材料表面形成的导电路径。跟踪通常与空气中的固体绝缘有关,例如架空线路绝缘子,但现在认识到,跟踪发生在大型变压器内部的油压板绝缘界面。表面电流实际上是电荷在电场作用下的漂移,电场可以是一般电场,也可以是围绕空间电荷形成的局部增强场。开发了一种针杆结构,以促进油压板界面在受控条件下的表面跟踪,而不会出现表面闪过或击穿。该方法用于研究高压源施加在油压板界面上的表面放电引起的泄漏电流。本文概述了实验装置,并给出了将测量电流与相应的局部放电进行比较的结果。随后提出了一种描述漏电流形成过程的机制
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