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Electric Field Optimization for High Voltage Circuit Breaker Using FEM

机译:使用FEM的高压断路器电场优化

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This paper gives an optimized solution for the electric field of high voltage SF_6 circuit breaker and the optimized contour of electrode has been achieved using Finite Element Method (FEM). As the development of high voltage switches, there are higher requirements for excellent qualities of the arc-quenching and insulation in the interrupter of the high voltage circuit breaker. However there are more than one dielectric in the interrupter, and the structure is complex, so it is very difficult to analyze the electric field. FEM is effective for the complex engineering analysis. For the advantage of FEM method, electric field in the interrupter is optimized by adjusting the shape of the electrodes with the electric flux density as object function. Based on the analysis, the optimized shape of the electrodes is obtained. The result shows that the optimization method presented here is very useful in designing the shape of the inner interrupter.
机译:本文为高电压SF_6断路器的电场提供了优化的解决方案,并且使用有限元方法(FEM)实现了电极的优化轮廓。随着高压开关的开发,对高压断路器的断路器中的电弧淬火和绝缘材料的优异质量有更高的要求。然而,在断路器中存在多于一个电介质,并且结构是复杂的,因此分析电场很难。 FEM对于复杂的工程分析是有效的。为了FEM方法的优点,通过用电量密度调节电极的形状作为物体功能来优化断路器中的电场。基于分析,获得了电极的优化形状。结果表明,这里呈现的优化方法在设计内部断路器的形状方面非常有用。

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