Electrical field and potential distribution of polymer insulators under the influence of a three phase supply

H. L. Rasara, K. Wong
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引用次数: 3

Abstract

Power distribution and transmission networks widely adopt composite insulators for the overhead power line applications. The premature failure of these insulators due to the high electric field induced in them has become a major disappointment in the recent years. In this paper, an 11kV composite insulator is modelled in a three phase high voltage environment, and the induced electrical field is studied using finite element analysis. To reduce the computational time and resources, a simplified geometry for the insulator is also proposed. The electric field calculations are used to understand the importance of using a three phase supply in computational and experimental analysis of insulators, which we determine is more accurate than using a single phase supply.
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三相电源影响下聚合物绝缘体的电场和电位分布
配电网和输电网广泛采用复合绝缘子作为架空输电线路。近年来,这些绝缘子由于其内部感应的高电场而过早失效已成为令人失望的主要问题。本文以11kV复合绝缘子为研究对象,对其三相高压环境下的感应电场进行了有限元分析。为了减少计算时间和资源,还提出了一种简化的绝缘子几何形状。电场计算被用来理解在绝缘子的计算和实验分析中使用三相电源的重要性,我们确定它比使用单相电源更准确。
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