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Modeling and Construction of Marx Impulse Generator Based on Boost Converter Pulse-Forming Network

机译:基于Boost变换器脉冲形成网络的马克思脉冲发生器建模与构建。

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This paper presents the design and construction of a sample of Marx pulsed generator based on boost converter (BC) pulse-forming networks (BCPFNs). BCPFN is used instead of the conventional Marx floors for constructing this pulsed generator. BCPFN is carried out by connecting inductors and capacitors in series and parallel modes, respectively, by using solid-state switches, and during this procedure the pulsed generator converts to BC temporarily and increases the voltage of capacitors uniformly to a considerable value. This technique causes an increase in the discharging voltage level to the load that is many times more than its dc voltage source by charging the capacitors to a greater level. In order to take advantage of the benefits of Marx generator and PFN, this paper suggests a new circuit with the minimum number of switches. It means, to compose BCPFN and Marx, we have tried to design the circuit with fewer switches and instead of it we have achieved our desired performance with changing the operating mode in the states of BC, PFN, BCPFN, and BCPFN Marx. The results are simulated with MATLAB software. At the end, the experimental results of the construction of the above-mentioned system at low-power levels are presented, and the topology's accuracy is proved by comparing them to the results of simulation.
机译:本文介绍了基于升压转换器(BC)脉冲形成网络(BCPFN)的马克思脉冲发生器样本的设计和构建。使用BCPFN代替常规的Marx底板来构造此脉冲发生器。通过使用固态开关分别以串联和并联模式连接电感器和电容器来执行BCPFN,并且在此过程中,脉冲发生器会暂时转换为BC,并将电容器的电压均匀地增加到相当大的值。通过将电容器充电到更大的水平,该技术使负载的放电电压水平增加了其负载的直流电压源的几倍。为了利用马克思发生器和PFN的优势,本文提出了一种开关数量最少的新电路。这意味着,为了构成BCPFN和Marx,我们试图设计具有更少开关的电路,取而代之的是,我们通过更改BC,PFN,BCPFN和BCPFN Marx状态下的工作模式来达到期望的性能。使用MATLAB软件对结果进行仿真。最后,给出了上述系统在低功耗水平下的实验结果,并通过与仿真结果进行比较证明了拓扑的准确性。

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