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Particle in cell simulation of peaking switch for breakdown evaluation

机译:峰值开关的单元模拟中的粒子用于击穿评估

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Marx generator connected to peaking capacitor and peaking switch can generate Ultra-Wideband (UWB) radiation. A new peaking switch is designed for converting the existing nanosecond Marx generator to a UWB source. The paper explains the particle in cell (PIC) simulation for this peaking switch, using MAGIC 3D software. This peaking switch electrode is made up of copper tungsten material and is fixed inside the hermitically sealed derlin material. The switch can withstand a gas pressure up to 13.5 kg/cm. The lower electrode of the switch is connected to the last stage of the Marx generator. Initially Marx generator (without peaking stage) in air; gives the output pulse with peak amplitude of 113.75 kV and pulse rise time of 25 ns. Thus, we design a new peaking switch to improve the rise time of output pulse and to pressurize this peaking switch separately (i.e. Marx and peaking switch is at different pressure). The PIC simulation gives the particle charge density, current density, E counter plot, emitted electron current, and particle energy along the axis of gap between electrodes. The charge injection and electric field dependence on ionic dissociation phenomenon are briefly analyzed using this simulation. The model is simulated with different gases (N2, H2, and Air) under different pressure (2kg/cm, 5kg/cm, 10kg/cm).
机译:连接到峰值电容器和峰值开关的Marx发生器可以产生超宽带(UWB)辐射。设计了一个新的峰值开关,用于将现有的纳秒级马克思发生器转换为超宽带光源。本文使用MAGIC 3D软件解释了此峰化开关的粒子模拟(PIC)。该峰化开关电极由铜钨材料制成,并固定在密闭的derlin材料内部。该开关可承受高达13.5 kg / cm的气压。开关的下部电极连接到马克思发生器的最后一级。最初是空气中的马克思发生器(无峰化阶段);给出峰值幅度为113.75 kV,脉冲上升时间为25 ns的输出脉冲。因此,我们设计了一个新的峰值开关,以改善输出脉冲的上升时间并分别对该峰值开关加压(即,马克思和峰值开关处于不同的压力下)。 PIC模拟沿着电极之间的间隙轴给出了粒子电荷密度,电流密度,E计数图,发射电子电流和粒子能量。使用此仿真简要分析了电荷注入和电场对离子解离现象的依赖性。使用不同压力(2kg / cm,5kg / cm,10kg / cm)的不同气体(N2,H2和空气)对模型进行仿真。

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