期刊文献+

快前沿直线脉冲变压器单级模块开关触发时延分散性实验研究 被引量:3

Experimental study on FLTD stage and its discharge synchronization
下载PDF
导出
摘要 针对12支路并联的快前沿直线脉冲变压器单级模块,给出了模块的电路结构和关键器件参数,实验获得了12只多间隙气体开关的自击穿特性和触发特性。同时,还给出了快前沿直线脉冲变压器模块输出电流的初步实验结果,工作电压150kV时,次级短路放电电流幅值为235kA,电流前沿88.2ns(10%~90%)。次级带0.58Ω负载情况下,输出电流幅值114.5kA,电流前沿88.9ns(10%~90%)。利用微分环测量了12只开关的触发时延分散性,结果表明100次实验开关触发时延分散性近似符合正态分布,开关触发时延分散性对输出电流的影响不大,电流幅值和前沿的标准偏差分别小于2.0%,4.0%,电流波形的畸变主要以平顶为主。 This paper summarizes the design and test results of twelve-brick fast linear transformer driver(FLTD) stage.The configuration and critical components of the stage are introduced.The self-breakdown voltage and triggering feature testing of all the switches is operated.When the charge voltage of the stage is 150 kV,the short-circuit output current is 235 kA,and the current rise time is 88.2 ns(10% to 90%).For a 0.58 Ω load,the output current is 114.5 kA,and the current rise time is 88.9 ns(10% to 90%).Discharge synchronization of all the twelve switches with charge voltage of 120 kV is studied with differential loop.The experimental results indicate that the probability curve for discharge synchronization is consistent with the Gaussian curve approximately for 100 shots.The standard deviation of peak current and the current rise time are under 2.0% and 4.0%,respectively.The output current waveforms distort slightly.
出处 《强激光与粒子束》 EI CAS CSCD 北大核心 2011年第12期3426-3430,共5页 High Power Laser and Particle Beams
基金 西北核技术研究所预研基金项目(11030707)
关键词 快前沿直线脉冲变压器 单级模块 多间隙气体开关 微分环 触发时延分散性 fast linear transformer driver stage single-stage module multi-gap gas switch differential loop discharge synchronization
  • 相关文献

参考文献8

二级参考文献101

  • 1孙凤举,邱爱慈,曾正中,曾江涛,蒯斌,杨海亮.快Z箍缩短脉冲大电流驱动源技术的发展[J].强激光与粒子束,2006,18(3):513-520. 被引量:15
  • 2梁天学,孙才新,邱爱慈,孙凤举,张众,曾江涛,丛培天,尹家辉.200kV多级多通道火花开关[J].高电压技术,2006,32(10):56-58. 被引量:25
  • 3周良骥,邓建军,陈林,谢卫平,丰树平,关永超,吴守东,任靖,李晔.快脉冲直线变压器驱动源模块的原理及实验[J].强激光与粒子束,2006,18(10):1749-1752. 被引量:19
  • 4Mesyats G A. Pulsed power[M]. New York: Kluwer Academic/Plenum Publishers, 2004.
  • 5Bastrikov A N, Kim A A, Kovalchuk B M, et al. Fast primary energy storage based on linear transformer scheme[C]//Proc 11th IEEE International Pulsed Power Conference. 1997:489-497.
  • 6Kim A A, Kovalchuk B M, Bastrikov A N, et al. 100 ns current rise time LTD stage[C]//Proc 13th IEEE International Pulsed Power Conference. 2001 :433.
  • 7Kim A A, Bastrikov A N, Volkov S N, et al. 1 MV ultra fast LTD generator[C]//Proc 14^th IEEE International Pulsed Power Conference. 2003:853-854.
  • 8Kim A A, Bastrikov A N, Kovalchuk B M, et al. 100 GW fast LTD stage[C]//Proc ^th Symposium on High Current Electronics. 2004: 141-144.
  • 9www. sandis: gov/news/resources/releases/2OO7/rapid-fire pulse, html[2008-07-02].
  • 10Kim A, Sinebryukhov V, Bastrikov B M, et al. Design and first tests of five 100 GW fast LTD cavities driving an e-beam diode load[C]// Proc ^th IEEE International Power Modulator Conference. 2006:144-147.

共引文献84

同被引文献97

引证文献3

二级引证文献53

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部