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A Modular Over-voltage Trigger Device for Two-electrode Spark-gap Switches

机译:用于双电极火花间隙开关的模块化过压触发装置

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In order to meet the requirement of high repetitive operation of Marx generator, which is normally restricted by the ablation and self-breakdown problems of three-electrode spark-gap switches, a modular over-voltage trigger device for two-electrode spark-gap switches is designed in this paper. The proposed two-electrode spark-gap switches are designed on the basis of an eight-level inductive isolated Marx generator. Numerical simulations and experiments are carried out for a single stage over-voltage trigger device, respectively. The influence of the transformer parameters, pulse width, and peak value of output voltage on the trigger waveform is discussed. Furthermore, the overall simulation model of the Marx-generator triggered using over-voltage triggering method is established. The results show that trigger waveforms with amplitude of 5.8 kV, front edge of 160 ns, and half-width of $1.8 mumathrm{s}$ are achieved for a single stage trigger when the input voltage is 220 V. A programmable SiC MOSFET driver circuit based on FPGA platform is designed and will be used in the following study of the device.
机译:为了满足马克思发生器的高重复操作的要求,该Marx发生器通常受到三电极火花间隙开关的消融和自我击穿问题的限制,这是两个电极火花间隙开关的模块化过压触发装置是在本文中设计的。所提出的双电极火花间隙开关是基于八级电感隔离的Marx发生器设计的。分别对单级过电压触发装置进行数值模拟和实验。讨论了变压器参数,脉冲宽度和输出电压对触发波形上的峰值值的影响。此外,建立了使用过电压触发方法触发的马克思发生器的整体仿真模型。结果表明,触发波形,幅度为5.8 kV,前边缘为160 ns,半宽度 $ 1.8 mu mathrm {s $ 当输入电压为220 V时,为单级触发实现。设计基于FPGA平台的可编程SIC MOSFET驱动电路,并将在以下对设备的研究中使用。

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