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首页> 外文期刊>IEEE Transactions on Plasma Science >Design of Trigger Circuit for High-Power Gas Switch Based on Flyback Circuit
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Design of Trigger Circuit for High-Power Gas Switch Based on Flyback Circuit

机译:基于反激电路的大功率气体开关触发电路设计

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摘要

This paper proposes a flyback-circuit-based design of a trigger circuit for a high-power gas switch. By incorporating a flyback circuit in a high-power gas switch, it is possible to generate a high step-up ratio and high-voltage pulse by using a transformer. Furthermore, simple trigger circuit having the minimum possible number of components (transformer and switch) can be realized. When an inductor is used as an energy storage element, energy is stored as a current source, and thus, the element can operate reliably when low impedance exists between the trigger node of the switch after triggering. According to the fundamental operating principle of a flyback circuit, the proposed trigger circuit is designed considering the maximum trigger voltage and energy required for a high-power gas switch. To verify the proposed design procedure and feasibility of the trigger circuit, a compact trigger circuit (7.5 kV, 1.3 mJ/pulse) is simulated using the PSpice program and implemented. Based on this compact circuit, a trigger circuit (20 kV, 100 mJ/pulse) for a triggered vacuum switch (TVS) is developed, and the tests with an actual TVS (3.3 kJ) are carried out.
机译:本文提出了一种基于反激电路的大功率气体开关触发电路设计。通过在高功率气体开关中集成反激电路,可以通过使用变压器来产生高升压比和高压脉冲。此外,可以实现具有尽可能少的部件(变压器和开关)数量的简单触发电路。当使用电感器作为能量存储元件时,能量被存储为电流源,因此,当触发之后在开关的触发节点之间存在低阻抗时,该元件可以可靠地工作。根据反激电路的基本工作原理,提出的触发电路在设计时考虑了大功率气体开关所需的最大触发电压和能量。为了验证所提出的触发电路的设计程序和可行性,使用PSpice程序模拟并实现了紧凑的触发电路(7.5 kV,1.3 mJ /脉冲)。基于这种紧凑的电路,开发了用于触发式真空开关(TVS)的触发电路(20 kV,100 mJ /脉冲),并使用实际TVS(3.3 kJ)进行了测试。

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