六通道自击穿水开关多通道导通实验研究

Experimental study on multi-channel conduction of a six-channel self-breakdown water switch

  • 摘要: 为满足实验需求,需缩短10 MA脉冲功率装置的负载电流上升沿,减小自击穿水开关导通电感可缩短负载电流上升沿。其中要求,自击穿水开关的导通电感由150 nH减小至120 nH。增加自击穿水开关的导通通道是有效降低导通电感的方式,根据计算分析,采用六通道自击穿水开关结构可将导通电感减小至115 nH。根据Martin半经验判据,基于由设计开关电感参数推导的升压时间、计算获得的电磁波渡越相邻电极时间、以及根据历史实验数据得出的单通道抖动时间,初步判定设计的六通道自击穿水开关结构可实现六通道放电。基于此,加工了六通道自击穿水开关,并在10 MA装置上开展了实验验证,实验结果表明:在3 MV工作电压下,六路电极间隙均可形成稳定明亮放电通道,验证了六通道自击穿开关的可行性。根据实测电压波形,三平板传输线入口电压上升沿为36 ns,较之前三通道开关(相同负载)的电压上升沿(54 ns)减小18 ns,估算导通电感为118 nH,表明设计的六通道自击穿水开关可满足减小负载电流上升前沿的需求。

     

    Abstract:
    Background Self-breakdown water switches are core components of pulsed power facilities. Conduction inductance of these switches directly determines the rise time of the load current.
    Purpose To meet the requirement for shortening the load current rise time for a 10 MA pulsed power facility, reducing the conduction inductance of the self-breakdown water switch was identified as an effective solution. The target is to reduce the conduction inductance from 150 nH to 120 nH.
    Methods Increasing the number of conduction channels is an effective approach to reduce the conduction inductance of self-breakdown water switches. Theoretical calculation results show that a six-channel self-breakdown water switch structure can reduce the conduction inductance to 115 nH. According to Martin's semi-empirical criterion, the feasibility of six-channel discharge for the designed switch was preliminarily verified with three parameters: the voltage rise time derived from the inductance parameters, the transit time between adjacent electrodes, and the single-channel jitter time. Based on this assessment, the six-channel self-breakdown water switch prototype was fabricated, and verification experiments were carried out on the 10 MA pulsed power facility.
    Results Experimental results show that stable and bright discharge channels can be formed in all six electrode gaps under an operating voltage of 3 MV, which verifies the feasibility of the six-channel self-breakdown switch. According to the measured voltage waveforms, the voltage rise time at the inlet of the tri-plate transmission line is 36 ns, which is 18 ns shorter than the 54 ns rise time of the previous three-channel switch under the same load condition. The actual conduction inductance of the six-channel switch is estimated to be 118 nH.
    Conclusions The designed six-channel self-breakdown water switch can effectively reduce conduction inductance and shorten the load current rise time, which fully meets the expected experimental requirements.

     

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