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Development and Analysis of PFN Based Compact Marx Generator Using Finite Integration Technique for an Antenna Load

机译:基于PFN的紧凑型马克思发生器有限积分技术在天线负载上的开发与分析。

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This paper presents the design and development of a compact Marx generator based on pulse forming network (PFN) along with a peaking capacitor rated at 300 kV and 64 J. Proposed scheme consists of identical PFNs connected across the charging and grounding resistors according to the Marx generator scheme. Modular construction of the Marx generator is useful in altering the stage capacitance to obtain varying pulse rise time and wave shapes at the output. A peaking capacitor connected at the output of the Marx generator significantly improves the rise time from 25 to 5 ns suitable for driving an antenna load. The effect of peaking capacitor on the intensity of far-field radiation is simulated using finite integration technique for a distance of 15, 20, 30, 40, and 50 m and the results are presented and discussed.
机译:本文介绍了一种基于脉冲形成网络(PFN)的紧凑型Marx发生器的设计和开发,以及一个额定电压为300 kV和64 J的峰值电容器。建议的方案由根据Marx的充电和接地电阻两端连接的相同PFN组成发电机方案。马克思发生器的模块化结构可用于更改级电容,以获得变化的脉冲上升时间和输出波形。连接在Marx发生器输出端的峰值电容器可将上升时间从25 ns缩短至5 ns,适合驱动天线负载。使用有限积分技术对距离为15、20、30、40和50 m的峰值电容器对远场辐射强度的影响进行了仿真,并给出了结果并进行了讨论。

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