期刊文献+

固态脉冲功率驱动源主磁开关的特性 被引量:3

Characteristics of magnetic switch used as main switch of solid-state accelerator
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摘要 为了提高固态脉冲功率驱动源的工作性能,研究了使用磁开关作为主开关的关键参数。分析了磁芯体积、磁芯损耗以及饱和电感等关键参量对磁开关工作性能的影响。结果表明:对于选用的磁开关,当磁性高度为0.05m时,磁开关的封装系数取得极大值;平均磁路长度大于1m时,磁芯绕组的饱和电感变化缓慢。利用饱和波理论简要解释了磁芯饱和的物理过程,推导了磁开关输出脉冲上升时间因子表达式,结果表明:磁性材料厚度、电阻率以及磁芯内外层磁路长度差等参数是影响磁开关输出脉冲上升因子的重要因素。 In order to improve the performance of solid-state accelerator,the characteristics of magnetic switch used as the main switch of the accelerator have been investigated.The volume of magnetic core,the loss,and saturated inductance of the magnetic switch have been derived.The results show that the spacing factor of the magnetic switch reaches the peak when the height of the magnetic materials is 0.05 m for selected magnetic cores.The saturated inductance of the windings changes slowly when the average magnetic path length of the core is greater than 1 m.The physical process of saturation in the cores was analyzed by using saturation-wave theory.The rise-time factor of the output pulse was derived.The thickness,resistivity and magnetic path length difference of the magnetic core are shown to be key parameters affecting the rise-time factor.
出处 《强激光与粒子束》 EI CAS CSCD 北大核心 2012年第4期863-867,共5页 High Power Laser and Particle Beams
基金 国家自然科学基金项目(11075209)
关键词 脉冲功率技术 固态化脉冲驱动源 磁开关 主开关 磁芯 pulse power technology solid-state accelerator magnetic switch main switch magnetic core
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参考文献7

  • 1Wolman V M, Kaden H.On the eddy current delay in magnetic switching process[J].Zeitschr f Tech Phys, 1932, 13(7):330.
  • 2Schneider L, Reed K, Harjes H, et al.Status of repetitive pulsed power at Sandia National Laboratories[C]//12th IEEE Int Pulsed Power Conf.1999:523-527.
  • 3戴育航,钱照明.磁脉冲压缩技术及其在脉冲电源领域中的应用[J].电力电子技术,1999,33(2):54-57. 被引量:19
  • 4Yang Shi, Zhong Huihuang, Qian Baoliang, et al.An all solid-state, rolled strip pulse forming line with low impedance and compact structure[J].Rev Sci Instrum, 2010, 81:043303.
  • 5Buttram M.Some future directions for repetitive pulsed power[J].IEEE Trans on Plasma Sci, 2002, 30(1):3-8.
  • 6BluhmH.脉冲功率系统的原理与应用[M].江伟华,张弛,等(译).北京:清华大学出版社,2008.
  • 7Nunnally W C.Magnetic switches and circuits[R].A779833, 1983.

二级参考文献2

  • 1罗阳(译).非晶态金属合金[M].北京:冶金工业出版社,1993..
  • 2罗阳,非晶态金属合金,1993年

共引文献37

同被引文献28

  • 1张军,钟辉煌,杨汉武.高功率微波脉冲功率驱动源研究进展[J].高电压技术,2004,30(6):45-48. 被引量:12
  • 2杨平,文远芳,胡希伟,叶才勇.基于磁开关的高压高频脉冲陡化电路的设计[J].高电压技术,2006,32(2):45-47. 被引量:8
  • 3BluhmH.脉冲功率系统的原理与应用[M].江伟华,张弛,等(译).北京:清华大学出版社,2008.
  • 4Schneider L, Reed K, Harjes H, et ai. Status of repetitive pulsed power at sandia national laboratories[C]//Proc 12th IEEE Int Pulsed Power Conf. 1999: 523-527.
  • 5Melville W S. The use of saturable reactor as discharge devices for pulse generators[J]. Proc IEEE, 1951, 98(3): 185-207.
  • 6Mathias R A, Williams E M. Economic design of saturating reactor magnetic pulsers[J]. Transactions of the American Institute of Electri- cal Engineers, 1955, 741: 169.
  • 7Yang Shi, Zhong Huihuang, Yang Hanwu. A long pulse, ultra-low impedance pulse generator based on magnetic switch and strip line[C]// The 13th International Conference on Megagauss Magnetic Field Generation and Related Topics. 2010.
  • 8Harjes H, Reed K, Buttram M, et al. The repetitive high energy pulsed power module[C]//19th International Power Modulator Symposi- um. 1990.
  • 9Tokuchi A, Ninomiya N, Jiang W, et al. Repetitive pulsed power generator "ETIGO-IV"[J]. IEEE Trans on Plasma Science, 2002, 30 (5) :1637-1641.
  • 10Edwards R C, Giesselmann M G. Characterization of high power nanocrystalline transformer[C]//16th IEEE International Con{erence on Pulsed Power. 2007, 2:1509-1512.

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