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Modeling of a solid-state Marx generator with parasitic capacitances for optimization studies

机译:带有寄生电容的固态马克思发生器的建模,用于优化研究

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A state-space model of a bipolar solid-state Marx generator topology, including the influence of parasitic capacitances, is presented and discussed as an instrument to analyze the circuit operation. The modeling aims to assist the design engineer to enhance the circuit operating performance in order to reduce the losses and to aid in the selection of the semiconductor current ratings. Simulation results show that parasitic capacitances between Marx cells to ground can significantly load the solid-state switches and introduce new conditions in the operation of the circuit. These preliminary results show good agreement with experimental ones from a laboratory prototype comprising 4 stages, each assembled with 1200 V IGBTs and diodes, operating with 1000 V dc input voltage and 1 kHz frequency, giving 5 kV and 10 μs output pulses.
机译:提出并讨论了双极固态马克思发生器拓扑的状态空间模型,其中包括寄生电容的影响,作为分析电路工作的一种工具。该建模旨在帮助设计工程师增强电路工作性能,以减少损耗并帮助选择半导体额定电流。仿真结果表明,马克思单元与地面之间的寄生电容会给固态开关带来很大的负载,并为电路的运行带来新的条件。这些初步结果与实验室原型的实验结果吻合良好,该实验室原型包括4个阶段,每个阶段均由1200 V IGBT和二极管组装而成,以1000 V dc输入电压和1 kHz频率工作,提供5 kV和10μs的输出脉冲。

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