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Parallel Triggering and Conduction of Rail-Gap Switches in a High-Current Low-Inductance Crowbar Switch

机译:高电流低电感撬棒开关中的间隙开关的并行触发和导通

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The field-reversed configuration heating experiment (FRCHX) was designed to form closed-field-line magnetized target plasmas for magnetoinertial fusion and other high energy density plasma research. These plasmas are in a field-reversed configuration and are formed via a reversed-field theta pinch on an already magnetized background plasma. To extend the duration and temporal uniformity of the pinch, the capacitor bank driving the reversed-field discharge is crowbarred near the current peak. Four parallel rail-gap switches are used on the FRCHX for this application to ensure a low-inductance crowbar discharge path and to accommodate the large magnitude of the discharge current (often greater than 1 MA). Historically, parallel operation of spark gap switches in a crowbarring arrangement has often proved to be difficult due to the very low voltage present on the bank and across the switches at the time of peak current. In a low-inductance design, triggering can be further complicated by the rapid collapse of what little voltage there is across the switches as soon as the first spark gap begins conduction. This paper reports on the efforts that were made to develop a low-inductance crowbar switch for the FRCHX and to ultimately enable successful triggering and operation of the four parallel rail-gap switches used in the crowbar. The design of the low-inductance parallel switch assembly is presented first, followed by a description of the triggering scheme employed to ensure conduction of all four switches.
机译:场反向配置加热实验(FRCHX)被设计为形成封闭场线磁化的目标等离子体,用于磁电融合和其他高能量密度等离子体研究。这些等离子体呈反向磁场配置,并通过反向磁场θ夹在已经磁化的背景等离子体上形成。为了延长收缩的持续时间和时间均匀性,驱动反向场放电的电容器组在电流峰值附近被拉高。 FRCHX上为此应用使用了四个并联的轨距开关,以确保低电感撬棍放电路径并适应较大的放电电流(通常大于1 MA)。从历史上看,由于在峰值电流时在触排上和跨开关两端存在非常低的电压,因此在撬棒布置中火花间隙开关的并联操作通常被证明是困难的。在低电感设计中,一旦第一个火花隙开始导通,开关两端几乎没有电压会迅速崩溃,从而使触发更加复杂。本文报告了为FRCHX开发低电感撬棒开关并最终成功触发和操作撬棒中使用的四个并行轨隙开关所做的努力。首先介绍了低电感并联开关组件的设计,然后介绍了用于确保所有四个开关导通的触发方案。

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