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Characterization and analysis of a pulse forming network based 11 stage Marx system for a high power microwave, plasma and beam physics test stand

机译:基于脉冲形成网络的高功率微波,等离子体和光束物理测试台的脉冲形成网络的特征与分析

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Summary form only given. The University of New Mexico Electrical and Computer Engineering Department is developing advanced high power microwave sources and charged particle beam accelerators and pulsed power capabilities. This paper presents the characterization, analysis, implementation and modification of a high power Marx coupled to a low impedance charged particle beam accelerator. The 11 stage Marx is a bipolarity charged 100 kV device and each stage is comprised of the main capacitor and switch as well as an LCR based pulse forming line and a fast rise time peaking switch. A numerical model of the device has been created that includes the pulse forming network and is compared to experiments at various charging voltages. A configuration as well as experimental data for unipolar charging will also be presented. A variable load impedance has been designed that allows for output characterization of the Marx driving different impedances. To match the driver to a low impedance device and conical transmission line has been designed and numerical as well as experimental results of this are also presented. The initial triggering scheme called for electrical high voltage triggering of the first three stages but a design of a laser trigger based on 800 nm laser burst impinging on one of the electrode and its implementation will also be presented along with jitter measurements.
机译:仅给出摘要表格。新墨西哥州大学电气计算机工程系正在开发先进的高功率微波源和带电粒子束加速器和脉冲功率。本文介绍了高功率马克思的表征,分析,实施和修改,耦合到低阻抗带电粒子束加速器。 11阶段Marx是一款Bipolity充电100 kV设备,每个级由主电容器和开关以及LCR基脉冲形成线和快速上升时间峰值开关组成。已经创建了该装置的数值模型,其包括脉冲形成网络,并与各种充电电压的实验进行比较。还将提出一种配置以及单极充电的实验数据。设计了可变负载阻抗,其允许输出驱动不同阻力的马克思的输出表征。为了将驾驶员匹配到低阻抗装置和锥形传输线已经设计,并且还呈现了数字和实验结果。初始触发方案称为前三个阶段的电高电压触发,而是基于撞击电极之一的800nm激光突发的激光触发的设计以及其实现以及抖动测量。

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