电感
电气工程
振幅
可扩展性
电力传输
电压
材料科学
等效串联电感
气体放电
物理
传输(电信)
计算机科学
拓扑(电路)
工程类
光学
数据库
作者
Yongpeng Zhang,Zhijian Lu,Zhenfei Song,Xiaosong Tang,Lanjun Yang
标识
DOI:10.1109/tps.2022.3220655
摘要
This article proposes a gas switch with a low inductance (31 nH), a wide operating coefficient (≥50%), a rapid breakdown (< 100 ns), and a high intensity of current (532 kA/7.8 C). We also design a synchronous trigger system for discharging multiparallel switches while ensuring significant scalability and low cost. The maximum amplitude of the outputs of 16 pulses under high-resistance loads was 77.1 kV/14 ns (10%–90% rise time). Following this, we built a 200-kJ compact pulsed power device by using parallel plate transmission lines. This device can reduce the overall inductance by 14% compared with the previous generation of devices. We also investigated the factors influencing synchronous discharge as well as the conditions for the synchronous discharge of 16 gas switches in parallel. At an operating voltage of 70 kV, the maximum amplitude of the short-discharge current was 5.5 MA (deviation was less than 3%) and the shortest rise time was around $1 ~\mu \text{s}$ (10%–90% rise time). The stable operation of the device is important for physics research on the load.
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