期刊文献+

Ka波段径向波导功率合成网络 被引量:13

Power combiner using radial waveguide at Ka-band
下载PDF
导出
摘要 研究了一种Ka波段十二路径向波导-同轴探针形式的空间功率分配合成网络。经高频电磁仿真软件HFSS仿真表明:该结构在32.7~38.8GHz的频带范围内的回波损耗小于-20dB,插入损耗小于0.065dB,具有宽频带、低插损的优点,从而验证了该结构可以应用于功率合成器的设计。 In this paper, a twelve-path power combiner using radial waveguide and coaxial probes is studied. Simulation of the combiner using HFSS shows that the return loss of this structure is below -20dB and insertion loss is lower than 0. 065dB in the frequency band of 32.7 to 38.8 GHz. With the advantages of broad band and low insertion loss, this structure can be applied to the design of power combiner.
出处 《电波科学学报》 EI CSCD 北大核心 2010年第4期745-748,共4页 Chinese Journal of Radio Science
基金 国家创新群体(NSFC-60621002) 国家重点实验室创新基金资助
关键词 KA频段 径向波导 功率合成 Ka band radial waveguide power combiner
  • 相关文献

参考文献8

  • 1金哲,宋执环,何加铭.无线通信中有记忆功率放大器的一种预失真方法[J].电波科学学报,2008,23(1):85-89. 被引量:10
  • 2CHENG N S, ALEXANIAN A, CASE M G, et al. 40-W cw broad-band spatial power combiner using dense finline arrays[J]. IEEE Trans. Microwave Theory Tech. ,1999, 47(4) :1070-1076.
  • 3JIA P C, CHEN L Y, Alexanian Angelos, et al. Multioctave Spatial Power Combining in Oversized Coaxial Waveguide [J ]. IEEE Trans. Microwave Theory Tech. , 2002, 50(5) :1355-1360.
  • 4BIALKOWSKI M E, WARIS V P, DAVIS P W. Modelling and testing of radial divider/ combiners [C]//Singapore ICCS/'94, Conference Proceedings.
  • 5ALY E F, LEE S W, DAVID K A. simpli? ed design approach for radial power combiners[J]. IEEE Trans. Microwave Theory Tech. , 2006, 54(1) :247-255.
  • 6LIU X J, DOU W B. A novel type of rectangular-toradial waveguide transformer for rwsa at ka-band [ C ]~~China-Japan joint Microwave Conference (CJMW), 10-12 September 2008, 147-149.
  • 7邸英杰,章日荣,李渠塘,高新存.同轴—径向波导接头分析与设计[J].电波科学学报,1999,14(2):129-135. 被引量:6
  • 8陈文俊,黎滨洪,谢涛.FDTD法分析探针加载微带天线的简便方法[J].电波科学学报,2006,21(1):146-149. 被引量:3

二级参考文献16

  • 1R.F.哈林登.正弦电磁场[M].上海科学技术出版社,1964..
  • 2孟侃(译),正弦电磁场,1964年,224页
  • 3WONG, K L and CHEN, W S. Compact antenna with dual-frequency operation[J]. Electronics letters, 1997, 33(6) : 646-647.
  • 4Jun-Hai Cui, ShureShi Zhong, and Chun Yu. Accuate modeling of shorted microstrip patch antennas using the locally conformal FDTD method[J]. Microwave and optical technology letters, 2001,30(3) : 216-218.
  • 5J G Maloney et al.. A simple FDTD model for transient excitation of antennas by transmission lines [J]. IEEE Trans on AP, 1994, 42(2) : 289-292.
  • 6L Ding,Z X Ma,D R Morgan, et al.. A least-squares/ Newton method for digital predistortion of wideband signals [J]. IEEE Trans. on Communications, 2006, 54(5) : 833-840.
  • 7T J Liu, S. Boumaiza, F M Ghannouchi. Augmented Hammerstein predistorter for linearization of broadband wireless transmitters [J]. IEEE Trans. on Microwave Theory Tech. ,2006,54(4) : 1340-1349.
  • 8J H K Vuolevi,T Rahkonen,J P A Manninen. Measurement technique for characterizing memory effects in RF power amplifiers [J]. IEEE Trans. on Mierowave Theory Tech. ,2001,49(8) : 1383-1388.
  • 9T J Liu, S Boumaiza, F M static nonlinearities and Ghannouchi. Deembedding accurately identifying and modeling memory effects in wide-band RF transmitters [J]. IEEE Trans. on Microwave Theory Tech.,2005, 53(11) :3578-3587.
  • 10L Ding, G T Zhou,D R Morgan. A robust digital baseband predistorter constructed using memory polynomials [J]. IEEE Trans. on Communications, 2004, 52 (1) :159-164.

共引文献15

同被引文献79

引证文献13

二级引证文献20

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