期刊文献+

基于过模波导的高功率微波准相干功率合成器 被引量:3

X-band quasi-coherent power combiner based on overmoded waveguides for high power microwave
在线阅读 下载PDF
导出
摘要 研究了一种用于功率合成的GW级高功率微波功率合成器。该合成器工作在X波段,输入微波由2路工作频率不同的X波段的微波源产生。为了满足输出功率和功率容量的要求,用于功率合成的微波源工作段波导的过模因子为12.7,这给功率合成器的设计带来了一定的困难。着重讨论了如何利用过模波导设计X波段高功率合成器,研究了如何抑制过模波导的高次模式并提高其功率容量和传输效率。设计的功率合成器单路传输效率达到99.0%以上,允许的最大输出功率达到5.6 GW以上,还可以按照需求适当增大高度,以进一步提高其功率容量而不影响传输效率。 A GW level high power combiner is investigated with theoretical analysis,numerical calculation and full wave simulation.The power combiner operates at X band,and is fed by two X-band microwave sources.To meet the requirements of power handling capacity,the overmoding ratio of the operating waveguide in the high microwave sources for combining is 12.7,which gives difficulties for the design of the combiner.This paper focuses on how to design the X band high power combiner based on overmoded waveguides,i.e.,the methods for enhancing the transmission efficiency and power handling capacity,while suppressing the higher order modes.The designed power combiner has a power handing capacity higher than 5.6 GW,and its one-way transmission efficiency is above 99.0%.The power handling capacity can be further enhanced by enlarging the height of the main waveguide without any influence on the transmission efficiency.
出处 《强激光与粒子束》 EI CAS CSCD 北大核心 2010年第11期2658-2662,共5页 High Power Laser and Particle Beams
基金 国家高技术发展计划项目 国家建设高水平大学公派出国研究生项目(2007103890)
关键词 高功率微波 功率合成 双工器 过模 功率容量 high power microwave power combining diplexer overmoded power handling capacity
  • 相关文献

参考文献11

  • 1Fan Yuwei,Zhong Huihuang,Li Zhiqiang,et al.A double-band high-power microwave source[J].J Appl Phys,2007,102:103304.
  • 2Fan Yuwei,Zhong Huihuang,Shu Ting,et al.Complex magnetically insulated transmission line oscillator[J].Phys Plasmas,2008,15:083108.
  • 3张晓萍,钟辉煌,张建德,舒挺,刘永贵,李传胪.利用负载电流产生微波的新型MILO[J].强激光与粒子束,2003,15(1):80-84. 被引量:12
  • 4张军,钟辉煌,杨建华,舒挺.具有谐振腔的多波切伦柯夫振荡器的粒子模拟[J].强激光与粒子束,2003,15(1):85-88. 被引量:17
  • 5Bugaev S P,Cherepenin V A,Kanavets V I,et al.Relativistic multiwave Cerenkov generator[J].IEEE Trans on Plasma Sci,1990,18(3):525-531.
  • 6Zhang Jun,Zhong Huihuang,Luo Ling.A novel overmoded slow-wave high-power microwave(HPM) generator[J].IEEE Trans on Plasma Sci,2004,32(6):2236-2242.
  • 7Abe D K,Carmal Y,Miller S M,et al.Experimental studies of overmoded relativistic backward-wave oscillators[J].IEEE Trans on Plasma Sci,1998,26(3):591-604.
  • 8Zhang Jun,Zhong Huihuang,Shu Ting,et al.A new high efficiency multiwave Cerenkov generator operating at low magnetic field[J].Chin Phys Lett,2003,20(12):2265-2268.
  • 9Li Guolin,Yuan Chengwei,Zhang Jiayan,et al.A diplexer for gigawatt class high power microwaves[J].Laser and Particle Beams,2008,26:371-377.
  • 10李国林,舒挺,袁成卫.S波段高功率微波波导输出多工器研究[J].强激光与粒子束,2007,19(4):667-670. 被引量:8

二级参考文献25

  • 1刘庆想,袁成卫.一种新型同轴TEM-圆波导TE_(11)模式变换器[J].强激光与粒子束,2004,16(11):1421-1424. 被引量:23
  • 2Lemke R W, Clark M C. Theory and simulation of high-power microwave generation in a magnetically insulated transmission line oscillator[J]. J App Phys, 1987, 62(8):3436-3440.
  • 3Calico S E, Clark M C, Lemke R W, et al. Experimental and theoretical investigations of a magnetically insulated line oscillator(Milo)[A]. SPIE[C], 1995, 2557:50-59.
  • 4Lemke R W, Calico S E, Clark M C. Investigation of a load-limited, magnetically insulated transmission line oscillator(MILO)[J]. IEEE Trans Plasma Sci, 1997, 25:364-374.
  • 5Haworth M, Allen K, Baca G, et al. Recent progress in the Hard-tube MILO experiment[A]. SPIE[C], 1997, 3158:28-39.
  • 6Ashby D E T F, Eastwood J W, Allen J, et al. Comparison between experiment and computer modeling for simple MILO configurations[J]. IEEE Trans Plasma Sci, 1995, 23:959-969.
  • 7Eastwood J W, Hawkins K C, Hook M P. The tapered MILO[J]. IEEE Trans Plasma Sci, 1998, 26:698-713.
  • 8Price D, Sze H M. Phase-Stability Analysis of the Magnetron-Driven VCO Experiment[J]. IEEE Trans Plasma Sci, 1990, 18:580-585.
  • 9Fazio M V, Kinross-Wright J, Haynes B, et al. The virtual cathode microwave amplifier experiment[J]. J App Phys, 1989, 66(6):2675-2677.
  • 10Price D, Sze H M, Fittinghoff D, et al. Phase and frequency locking of a cavity VCO driven by a relativistic magnetron[J]. J App Phys, 1989, 65(12):5185-5189.

共引文献34

同被引文献30

  • 1杜仑铭,徐可荣.宽带波导魔T的设计[J].舰船电子对抗,2006,29(3):52-54. 被引量:12
  • 2杨永辉,郑贵强.S波段2kW连续波功率合成技术[J].强激光与粒子束,2007,19(1):95-98. 被引量:3
  • 3Chen Changhua, Liu Guozhi, Huang Wenhua, et al. A repetitive X-band relativistic backward-wave oscillator[J]. IEEE Trans on Plasma Sci, 2002, 30(3):1108-1111.
  • 4Xiao Renzhen, Zhang Xiaowei, Zhang Ligang, et al. Efficient generation of multi-gigawatt power by a klystron-like relativistic backward wave oscillator[J]. Laser and Particle Beams, 2010,28(3) : 505-511.
  • 5Xiao Renzhen, Chen Changhua, Zhang Xiaowei, et al. Efficiency enhancement of a high power microwave generator based on a relativistic backward wave oscillator with a resonant reflector[J]. J Appl Phys, 2009, 105:053306.
  • 6Gunin A V, Klimov A L, Korovin S D, et al. Relativistic X-band BWO with 3 GW output power[J]. IEEETrans on Plasma Sci, 1998, 26 (3) :326-330.
  • 7Chang C, Fang J Y, Zhang Z Q, et al. Experimental verification of improving high-power microwave window breakdown thresholds by reso- nant magnetic field[J]. Appl Phys Lett, 2010, 97:141503.
  • 8Chang C, Shao H, Chen C H, et al. Single and repetitive short-pulse high-power microwave window breakdown[J]. Phys Plasmas, 2010, 17:053301.
  • 9Li J, Huang H, Zhang Z, el al. A novel X band diplexer based on overmoded circular waveguides for high power microwaves[J]. 2013, 41 (10) :2724-2728.
  • 10Lin G, Shu T, Zhang J, et al. A diplexer for gigawatt class high power microwaves[J]. Laser and Particle Beams, 2008, 26:371-377.

引证文献3

二级引证文献1

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