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Research on Diagnostic Method of Plasma Caused by Corona Discharge on Top of Composite Insulator under Atmosphere Conditions

机译:大气条件下复合绝缘子顶部电晕放电诊断方法研究

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When a high voltage composite insulator is running online, there occurs corona discharge on both ends of it, which makes electricity particles accumulated on the top of the insulator. As the result, plasma is produced by corona discharge. With the incessant deterioration of running conditions, it is possible to make the plasma parameters change constantly to shorten part of creep distance, which is an important step during the whole flashover process. Therefore, it is undoubtedly significant to diagnose the plasma parameters for flashover mechanism research of contaminated composite insulators. Based on this, a composite insulator artificial contaminated test was designed and completed. The running conditions of insulator were simulated by adjusting the running parameters of the artificial contaminated lab, and the plasma parameters at certain running status were diagnosed by both Langmuir probe method and emission spectrum method. The test shows both of the two methods are valid for plasma diagnostic caused by corona discharge on the top of composite insulator, and the diagnostic results obtained by the two methods are accordant. The plasma parameters caused by corona discharge are in accordance with insulator's running status in trend.
机译:当高压复合绝缘体在线运行时,在其两端发生电晕放电,这使得在绝缘体的顶部累积的电力颗粒。结果,通过电晕放电产生等离子体。随着运行条件的不断劣化,可以使等离子体参数不断变化以缩短蠕变距离的一部分,这是整个闪络过程中的一个重要步骤。因此,诊断污染复合绝缘体的闪络机制研究的血浆参数无疑是显着的。基于此,设计并完成了复合绝缘体人工污染测试。通过调节人造污染实验室的运行参数来模拟绝缘体的运行条件,并通过Langmuir探针方法和发射光谱法诊断出某些运行状态下的血浆参数。测试表明这两种方法都是有效的,对于由复合绝缘体顶部的电晕放电引起的等离子体诊断,并且通过两种方法获得的诊断结果是一致的。由电晕放电引起的等离子体参数符合绝缘体在趋势中的运行状态。

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