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Electric Fields Distribution of 500kV AC Transmission Line V-type Composite Insulator with Conductive Defect

机译:具有导电缺陷的500kV交流输电线路V型复合绝缘子的电场分布

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摘要

The accurate detection of the defective composite insulators is vital to the safety of the transmission line in the power system. The defects distribution in the V-type insulator strings is more complex than that in the I-type insulator strings, which brings many difficulties to the accurate on-site detection of the defective insulators. In this paper, the three-dimensional models 500kV AC transmission line V-type composite insulator strings with the internal conductive defects were established with the application of the finite element method. The electric field distribution of the normal insulators and the insulators with conductive defects were calculated. The influences of the defects length and position parameters on the electric field distribution of the insulators were also analyzed. The calculation results show the electric field distribution will appear distortion apparently when the conductive defects exist in the insulators. The electric field distribution characteristics of the V-type insulator srtings with the different defect lengths and position parameters can be directly applied to the accurate field detection of the defective composite insulator.
机译:对有缺陷的复合绝缘子的准确检测对于电力系统中传输线的安全至关重要。 V型绝缘子串中的缺陷分布比I型绝缘子串中的缺陷分布更复杂,这给有缺陷的绝缘子的准确现场检测带来了许多困难。本文应用有限元方法,建立了具有内部导电缺陷的三维500kV交流输电线路V型复合绝缘子串的三维模型。计算了普通绝缘子和具有导电缺陷的绝缘子的电场分布。分析了缺陷长度和位置参数对绝缘子电场分布的影响。计算结果表明,当绝缘体中存在导电缺陷时,电场分布将明显出现畸变。具有不同缺陷长度和位置参数的V型绝缘子的电场分布特性可以直接用于缺陷复合绝缘子的精确场检测。

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