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A Three-Electrode Gas Switch Triggered by Microhollow Cathode Discharge With Low Trigger Voltage

机译:具有低触发电压的微空心阴极放电触发的三电极气体开关

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The trigger voltage is usually high in traditional three-electrode gas switch, which makes the trigger system large and complex in large-scale pulsed power system such as linear transformer driver. In this paper, a three-electrode gas switch triggered by microhollow cathode (MHC) discharge is put forward, which can be operated stably under low trigger voltage. MHC discharge is a kind of microplasma with the characteristics of low trigger voltage (several thousand volts), high electron density, and high gas pressure discharge. In this switch, three MHC triggers sharing the same cathode are designed as the third electrode of the switch in the middle. Positive and negative high voltages are applied to two main electrodes, respectively. The breakdown characteristics of MHC discharge triggered by pulse voltage are first studied. The trigger voltage can be as low as 8 kV at 0.3 MPa in pure N2 with the discharge peak current up to 80 A. A circuit simulation model describing breakdown process of MHC is also built. Then two operating modes of the switch, three-electrode mode (T-mode) and two-electrode mode (D-mode), are analyzed. The stable operation with the charging voltage from ±35 to ±50 kV is realized under different working coefficients from 64% to 92% and different trigger voltages from 8 to 15 kV. The turn-on parameters including delay time, jitter, and turn-on time are studied that the delay time and jitter of D-mode are longer than that of T-mode under the same condition. At last, the improvement of MHC trigger for the stable operation of D-mode with shorter delay time is described.
机译:在传统的三电极气体开关中,触发电压通常较高,这使得触发系统在大型脉冲电源系统(如线性变压器驱动器)中既庞大又复杂。本文提出了一种由微空心阴极(MHC)放电触发的三电极气体开关,该开关可在低触发电压下稳定运行。 MHC放电是一种具有低触发电压(几千伏),高电子密度和高气压放电的特征的微等离子体。在此开关中,三个MHC触发器共享同一阴极,被设计为中间的开关的第三个电极。正高压和负高压分别施加到两个主电极上。首先研究了脉冲电压触发的MHC放电的击穿特性。在纯N2中,在0.3 MPa下的触发电压可以低至8 kV,放电峰值电流高达80A。还建立了描述MHC击穿过程的电路仿真模型。然后,分析了开关的两种工作模式,即三电极模式(T模式)和两电极模式(D模式)。在64%至92%的不同工作系数和8至15 kV的不同触发电压下,在±35至±50 kV的充电电压下即可实现稳定的工作。研究了包括延迟时间,抖动和开启时间在内的开启参数,在相同条件下,D模式的延迟时间和抖动比T模式的延迟时间和抖动长。最后,介绍了MHC触发的改进,以使D模式稳定运行且延迟时间较短。

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