Multi-stress Aging Studies on Polymeric Surge Arresters for HVDC Transmission

Pranjal Gupta, G. N. Reddy, S. Reddy B.
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Abstract

In recent times, High Voltage DC transmission systems have played an integral role in transmitting a massive amount of electrical energy over very long distances economically. As the transmission system is exposed to the environment, it is prone to lightning surges and atmospheric stresses leading to insulation damage. Metal oxide surge arresters are widely used for protecting the power system from surges. The polymer housing of the arrester has several advantages over ceramic housing. However, it was reported that the polymer housing is affected by environmental factors leading to the failure of the insulation over the period. From the available literature, it was observed that there is no clear understanding of the aging on the polymeric housed surge arrester for the HVDC transmission system. Hence, an experimental investigation was conducted wherein the polymeric housed surge arresters were subjected to the cyclic exposure of the environmental stresses like UV, thermal and humidity similar to the field conditions along with the continuous application of HVDC and the leakage current was continuously recorded at regular time intervals. Visual inspection, hydrophobicity and FTIR (Fourier Transform Infrared) analysis were performed to understand the surface performance of the arresters.
高压直流输电用高分子避雷器的多应力老化研究
近年来,高压直流输电系统在经济地远距离传输大量电能方面发挥了不可或缺的作用。由于输电系统暴露在环境中,容易受到雷击浪涌和大气应力的影响,导致绝缘损坏。金属氧化物避雷器广泛用于保护电力系统免受浪涌的影响。避雷器的聚合物外壳比陶瓷外壳有几个优点。然而,据报道,聚合物外壳受到环境因素的影响,导致绝缘失效。从现有的文献中,我们观察到,对于高压直流输电系统中聚合物外壳避雷器的老化没有明确的认识。因此,进行了一项实验研究,将聚合物外壳避雷器置于类似于现场条件的紫外线、热、湿等环境应力下,并连续施加高压直流,以规定的时间间隔连续记录泄漏电流。通过目测、疏水性和傅里叶变换红外分析来了解避雷器的表面性能。
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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