Characterization of Insulator Faults in the Dhofar Power Transmission Network

Mohammed Kashoob, Haitham Al-Habsi, Mohammed Al-Mahri, Salim Al-Zubaidi
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Abstract

In power transmission systems, polymer composite insulators are widely used to provide electrical insulation. The safe operation of a power system relies heavily on the detection and replacement of defective insulators on power transmission lines. Most transmission line companies detect faulty insulators by measuring the voltage across them, performing thermal inspections or by examining insulator cracks. However, as transmission lines are long, identifying degraded insulators may be difficult. This paper examines reports of previous incidents that are related to insulator faults or flashovers in the Dhofar transmission network. This network is located in the southern part of the Sultanate of Oman. It extends to coastal areas, an industrial area, desert environment, and a mountainous terrain. Based on collected incident reports, it is evident that the majority of insulation faults are due to factors that are specific to the area where the transmission lines were installed. These factors include low atmospheric pressure, high humidity, salt deposits, temperature, wind, high levels of pollution and bird activity combined with insulator accelerated degradation. As part of this study, different areas and related factors are examined in order to be able to understand future insulator faults on the Dhofar transmission network.
佐法尔输电网绝缘子故障特征分析
在电力传输系统中,聚合物复合绝缘子被广泛用于提供电绝缘。电力系统的安全运行在很大程度上依赖于对输电线路上不良绝缘子的检测和更换。大多数输电线路公司通过测量绝缘体上的电压、进行热检查或检查绝缘体裂缝来检测绝缘体故障。然而,由于输电线路很长,识别退化绝缘体可能很困难。本文研究了先前在佐法尔输电网络中与绝缘子故障或闪络有关的事件报告。这个网络位于阿曼苏丹国的南部。它延伸到沿海地区、工业区、沙漠环境和山区地形。根据收集到的事故报告,很明显,大多数绝缘故障是由于输电线路安装区域特有的因素造成的。这些因素包括低气压、高湿度、盐沉积、温度、风、高水平的污染和鸟类活动,以及绝缘体加速降解。作为本研究的一部分,研究了不同的区域和相关因素,以便能够了解未来在佐法尔输电网上的绝缘子故障。
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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