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Electric field calculation and grading ring optimization for 1000 kV AC post porcelain insulator

机译:电场计算和等级环优化1000 kV交流陶瓷绝缘子

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摘要

Grading ring design is an important step in the post porcelain insulator design process, appropriate grading ring configuration can improve the electric field distribution of post insulators and extend the service life. In this paper, a static 3-D model of 1000 kV AC post porcelain insulator was established by using a finite element method (FEM) analysis software ANSYS. The calculation results of electric field distribution along the insulator were presented. The effect of grading ring structure to the electric field distribution of the post porcelain insulator was analyzed and a use of double ring configuration at the conductor side of the insulator is beneficial. Therefore, Artificial Fish Swarm Algorithm (AFSA) was applied to optimize the dimensions and location of grading rings, then the maximum electric field magnitudes on the surfaces of grading rings, flange and insulator sheds were compared and appropriate parameters of grading rings were recommended finally. The achievements of this paper have been successfully applied on the 1000 kV ultrahigh voltage (UHV) pilot project in China and it was proved very effective by field observations with an ultraviolet camera.
机译:分级环设计是瓷器绝缘子设计过程的重要一步,适当的分级环形配置可以改善后绝缘子的电场分布,延长使用寿命。本文采用了有限元方法(FEM)分析软件ANSYS建立了1000kV AC后瓷绝缘体的静态3-D型号。提出了沿绝缘体的电场分布的计算结果。分析了分级环结构对后瓷绝缘体的电场分布的影响,并在绝缘体的导体侧使用双环构造是有益的。因此,应用人造鱼类群算法(AFSA)以优化分级环的尺寸和位置,然后比较分级环,法兰和绝缘体棚的表面上的最大电场幅度,最后建议使用适当的分级戒指参数。本文的成就已成功应用于中国1000 kV超高电压(UHV)试点项目,并通过紫外线相机证明非常有效。

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