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Influence of Over-voltage Caused by Chopping Current on Electric Field Distribution in Vacuum Interrupter

机译:斩波电流引起的过电压对真空灭弧室电场分布的影响

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A transient circuit model for the vacuum circuit breaker switching three-phase inductive motor is established and the steep-fronted over-voltages waves caused by chopping current are calculated. Discrete Fourier transform (DFT) is introduced to decompound the step-front transient over-voltage. Several main frequency components are obtained, which are regarded as boundary excitation. The differential equations of transient field are deduced, in which conductivity gamma is taken into account due to existence of plasma and metal gas between contacts, contact and shield. FEM is adopted to calculate the electric field in the vacuum interrupter and superposition of power frequency voltage and over-voltage of chopping current is regarded as boundary excitation, in which Delaunay method of mesh generation is introduced to discrete the solved region. Potential distribution curves at representative time are shown, which are compared with the one in the static field.
机译:建立了真空断路器开关三相感应电动机的暂态电路模型,并计算了斩波电流引起的陡峭的过电压波。引入离散傅里叶变换(DFT)来分解阶跃前瞬态过电压。获得了几个主要频率分量,它们被视为边界激励。推导了瞬态场的微分方程,其中由于触点,触点和屏蔽层之间存在等离子体和金属气体,因此考虑了电导率伽马。采用有限元法计算了真空灭弧室中的电场,并将工频电压和斩波电流的过电压叠加作为边界激励,引入了网格生成的Delaunay方法离散求解区域。显示了代表性时间的电位分布曲线,并将其与静态场中的电位曲线进行了比较。

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