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Design and Optimization of a Low-Impedance Pulsed-Power Marx Generator to Drive High-Power Relativistic X-Band Magnetron

机译:低阻抗脉冲功率马克思发生器的设计与优化推动高功率相对论X频段磁控管

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One class of high-current relativistic HPM devices, the relativistic magnetron [1], provides a low-impedance (10-50 Omega) load that inherently needs matching to a low-impedance pulsed-power (Gigawatt or greater) supply to operate with maximum efficiency. One of the most common and reliable pulsed-power drivers used to accomplish this is a Marx generator. The University of New Mexico previously used a modified Pulseradreg 110A electron beam accelerator [2] to produce high-power microwaves [3] from a backward wave oscillator (BWO), which was a high-impedance load (130 Omega). This driver will be used for planned experiments with an X-band relativistic magnetron. The main part of the Pulserad's assembly is a Marx generator composed of capacitors, spark gaps and resistors electrically arranged in an 11-stage Marx circuit. The output impedance of the Marx generator is about ~35 Omega (which is why a shunt resistor was required to facilitate operation with the BWO), maximum charging voltage of each single stage is 100 kV, and total stored energy is about 600 Joules. In the present paper some results of the design and optimization efforts aimed at reducing the intrinsic impedance of the Marx generator are discussed. It turns out, for example, that by re-arranging the Marx's electrical circuit from the presently configured 11-stage Marx into a series-parallel connection of 12 capacitors, it is possible to decrease the impedance of the Marx generator down to ~15 Omega (implementing series-parallel connection of 2 parallel lines with 6 series capacitors in each line - 2times6 circuit), or even down to ~10 Omega (implementing series-parallel connection of 3 parallel lines of 4 series capacitors -3times4 circuit). Another feature that will be integrated in the redesign of the Pulseradreg 110 A electron beam accelerator is the use of a brazed ceramic insulator stack to facilitate high-vacuum operation. Successful completion of this upgrade will allow for experimental stu- - dies of a low-impedance relativistic X-band magnetron to begin to operate au naturel.
机译:一类高电流相对论的HPM器件,相对论磁控管[1],提供了一种低阻抗(10-50 omega)负载,其固有地需要与低阻抗脉冲功率(Gigawatt或更大)供应匹配以便运行最大效率。用于实现这一目标的最常见可靠的脉冲驱动器之一是马克思发生器。新墨西哥州的大学以前使用了改进的脉冲形状重复110A电子束加速器[2]以产生来自后向波振荡器(BWO)的高功率微波[3],其是高阻抗负荷(130ω)。该驱动程序将用于具有X波段相对论磁控管的计划实验。 Pulserad的组件的主要部分是由电容器,火花间隙和电阻组成的马克思发电机,电阻在11级Marx电路中。马克思发生器的输出阻抗约为〜35ω(这就是为什么需要分流电阻以促进使用BWO的操作,每个单级的最大充电电压为100 kV,并且总存储的能量大约是600焦耳。在本文中,讨论了旨在减少马克思发生器的内在阻抗的设计和优化努力的一些结果。例如,首先,通过将Marx的电路从本配置的11级Marx重新安排到12个电容器的串联连接,可以将马克思发电机的阻抗降低到〜15Ω (在每行 - 2箱6电路中实现2个平行线的串联连接2平行连接,甚至将〜10欧米加(实现4串电容器为-3×3秒钟的3个平行线的串联连接)。另一个将集成在Pulseradreg 110的重新设计中,电子束加速器是使用钎焊的陶瓷绝缘体堆来促进高真空操作。成功完成此升级将允许低阻抗相对论X频带磁控管的实验性STU-模具开始操作Au Naturel。

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