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A pulse forming network design for blocked-bore plasma armature experiments

机译:阻塞孔等离子体电枢实验的脉冲形成网络设计

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摘要

Recent experimental studies on plasma armatures at the Applied Physical Electronics Research Center at the University of Texas at Arlington require the delivery of a single high-current pulse. The railgun diagnostic program now in progress requires a ramping current waveform with a continuously positive di/dt until peak current is delivered approximately 1 ms after circuit closure. This pulse forming network (PFN) is designed to power blocked-bore plasma armature studies being conducted on a section of the THUNDERBOLT prototype, SUVAC. The PFN design has an operating voltage range from 300 to 1400 V and is capable of delivering peak currents up to 200 kA.
机译:德克萨斯大学阿灵顿分校的应用物理电子研究中心最近进行的有关等离子体电枢的实验研究要求传送单个大电流脉冲。现在进行中的轨道炮诊断程序需要持续不断的di / dt为正的斜坡电流波形,直到在电路闭合后约1 ms达到峰值电流为止。该脉冲形成网络(PFN)旨在为THUNDERBOLT原型SUVAC的一部分进行的阻塞孔等离子体电枢研究提供动力。 PFN设计的工作电压范围为300至1400 V,并能够提供高达200 kA的峰值电流。

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