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High voltage insulator contamination level online monitoring with conventional and novel methods

机译:高压绝缘体污染级别在线监测传统和新方法

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Conventional online monitoring techniques used for monitoring the levels of contamination on high voltage insulators, such as leakage current and partial discharge, are not effective in dry conditions since they require the surface of the insulator to be wetted by fog, rain, condensation or snow. In order to address this problem, the authors have formerly reported two new techniques based on microwave radiometry and microwave reflectometry. This paper compares the performance of conventional pollution monitoring methods with the novel radiometry and reflectometry techniques under controlled environmental conditions. The results show that when the insulator surface is dry the conventional methods are unable to distinguish the pollution level while the novel methods are able to clearly identify varying levels of pollution. After the surface is wetted, the conventional methods become effective however the partial discharge activity may rapidly develop to a flashover prior to the preventative maintenance being implemented. Thus, the novel contamination monitoring methods will potentially facilitate advanced warning of the future failure of a wet insulator in climates where insulators experience dry conditions for extended periods.
机译:用于监测高压绝缘体上的污染水平的常规在线监测技术,例如漏电流和局部放电,在干燥条件下无效,因为它们要求绝缘体的表面被雾,雨,冷凝或雪润湿。为了解决这个问题,作者以前报道了基于微波辐射测定和微波反射测量的两种新技术。本文比较了在受控环境条件下具有新型辐射测定和反射测量技术的常规污染监测方法的性能。结果表明,当绝缘子表面干燥时,常规方法无法区分污染水平,而新的方法能够清楚地确定不同水平的污染。在表面润湿后,传统方法生效但是在实施预防性维护之前,部分放电活动可以快速发展到闪络。因此,新颖的污染监测方法将可能促进未来湿绝缘体在气候中未来失败的先进警告,其中绝缘体长时间经历干燥条件。

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