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Assessment of the risk of failure of high voltage substations due to environmental conditions and pollution on insulators

机译:评估由于环境条件和绝缘子污染而导致的高压变电站发生故障的风险

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Pollution on electrical insulators is one of the greatest causes of failure of substations subjected to high levels of salinity and environmental pollution. Considering leakage current as the main indicator of pollution on insulators, this paper focuses on establishing the effect of the environmental conditions on the risk of failure due to pollution on insulators and determining the significant change in the magnitude of the pollution on the insulators during dry and humid periods. Hierarchical segmentation analysis was used to establish the effect of environmental conditions on the risk of failure due to pollution on insulators. The Kruskal-Wallis test was utilized to determine the significant changes in the magnitude of the pollution due to climate periods. An important result was the discovery that leakage current was more common on insulators during dry periods than humid ones. There was also a higher risk of failure due to pollution during dry periods. During the humid period, various temperatures and wind directions produced a small change in the risk of failure. As a technical result, operators of electrical substations can now identify the cause of an increase in risk of failure due to pollution in the area. The research provides a contribution towards the behaviour of the leakage current under conditions similar to those of the Colombian Caribbean coast and how they affect the risk of failure of the substation due to pollution.
机译:电绝缘子的污染是遭受高盐度和环境污染的变电站故障的最大原因之一。考虑到泄漏电流是绝缘子污染的主要指标,本文着重于确定环境条件对绝缘子污染造成的失效风险的影响,并确定干燥和干燥期间绝缘子污染程度的显着变化。潮湿的时期。分层分段分析用于确定环境条件对绝缘子污染造成的失效风险的影响。 Kruskal-Wallis检验用于确定由于气候时期造成的污染程度的重大变化。一个重要的结果是发现,在干燥期间,绝缘子上的泄漏电流比潮湿状态下的泄漏电流更常见。干旱期间由于污染造成的失败风险也更高。在潮湿时期,各种温度和风向对故障风险的影响很小。作为一项技术成果,变电站的运营商现在可以确定由于该区域的污染而导致故障风险增加的原因。该研究为在类似于哥伦比亚加勒比海沿岸的条件下泄漏电流的行为以及它们如何影响变电站因污染而发生故障的风险做出了贡献。

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