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Impact of spark gap breakdown phenomena on the output voltage of compact marx generators

机译:火花隙击穿现象对紧凑型马克思发电机输出电压的影响

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摘要

Compact Marx Generators (CMG) are widely used as portable pulse generators in different applications. They are of great importance anywhere that pulses with rise times on the order of tens of nanoseconds are needed such as nanosecond-pulse breakdown. Considering the fact that the breakdown of a spark gap is a statistical process, the delay times of the closing switches are also statistical and voltagedependent parameters. In this paper, a generalized state space-based model for compact Marx generators is proposed. It can be useful in investigating the impacts of statistical behavior of the breakdown process in spark gaps and closing switch time delays on nanosecond-pulse breakdown rod-plate gaps in nitrogen. Moreover, to increase the transferred current and energy to load, CMGs are used in parallel. The simulation results indicate that in this case, it is more important to have output voltages pulses with temporal low jitter. Discharges were modeled by a nonlinear load using a Rompe-Weizel model to calculate the time-dependent resistances of the spark gaps. The stray capacitances were calculated using electrostatic simulations.
机译:紧凑型马克思发生器(CMG)被广泛用作不同应用中的便携式脉冲发生器。在需要数十纳秒量级的上升时间脉冲的任何地方(例如纳秒脉冲击穿),它们都非常重要。考虑到火花隙的击穿是一个统计过程,闭合开关的延迟时间也是统计和电压相关参数。本文提出了一种紧凑型马克思发生器的基于状态空间的广义模型。在调查击穿过程中火花间隙中的统计行为的影响以及关闭开关时间延迟对氮气中纳秒脉冲击穿杆-板间隙的影响时,它可能是有用的。此外,为了增加传递给负载的电流和能量,CMG并联使用。仿真结果表明,在这种情况下,使输出电压脉冲具有短暂的低抖动更为重要。使用Rompe-Weizel模型通过非线性负载对放电进行建模,以计算火花隙随时间变化的电阻。使用静电仿真计算了杂散电容。

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