期刊文献+

改进型COBRA透镜天线的设计 被引量:3

Design of improved COBRA lens antenna
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摘要 设计了X波段COBRA透镜型天线,利用电磁波在不同介质传播速度的差异,通过放置于圆锥喇叭口径处不同厚度的介质透镜改变TM01模不同扇区的相位,从而改变TM01模在普通喇叭口径处的轴对称分布,将轴对称的口径场分布转换为线对称,进而实现线极化或圆极化的轴向辐射。通过添加匹配介质,减小介质对微波的反射和驻波特性的影响;延伸喇叭到透镜边缘,使移相过程在波导内完成,有效地控制了电磁场模式。天线增益在中心工作频率为9.3 GHz时为19 dB,口径效率25%,辐射效率大于90%,反射系数小于1.3,轴比小于2 dB,3 dB相对带宽大于30%,几乎可以覆盖整个X波段。 An improved COBRA lens antenna in X-band for TMol mode is designed. The dielectric lens consisting of three or four sectors is located on the aperture plane of a conical horn. The antenna can radiate circular polarzied patterns, with a boresight peak and a high gain. The results of simulation demonstrate that at the operating frequency, the gain, the aperture efficiency and the radial efficiency are 19 dB, 25%, and more than 90% respectively. The axial ratio is less than 2 dB and the relative bandwidth of 3 dB is more than 30%, which covers almost the whole X-band.
出处 《强激光与粒子束》 EI CAS CSCD 北大核心 2005年第8期1256-1258,共3页 High Power Laser and Particle Beams
基金 国家863计划项目资助课题
关键词 TM01模 COBRA透镜天线 圆极化轴向辐射 TM01 mode COBRA lens antenna Circular polarized pattern
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参考文献4

  • 1Koslover R A. Compact, broadband high power circular TM01 to TE11 mode converter[P]. U. S. Patent, No. 4999591.
  • 2Courtney C C, Baum C E. The coaxial beam-rotating antenna (COBRA) : theory of operation and measured performance[J]. IEEE Trans on Antennas and Propagation, 2000, 48(2) :299-309.
  • 3Haworth M, Allen K, Baca G, et al. Recent progress in the hard-tube MILO experiment[A]. Proc of SPIE[C]. 1997, 3155,28-39.
  • 4Lo Y T, Lee S W. Antenna handbooks theory, applications and design[M]. New Jerseys Prentice-Hall Inc, 1998.

同被引文献18

  • 1黄赛赛,何小祥,杨阳.超宽带高功率Vlasov天线设计[J].微波学报,2012,28(S3):106-108. 被引量:2
  • 2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
  • 3袁成卫,刘庆想,钟辉煌.大尺寸模式转换天线的设计和实验研究[J].强激光与粒子束,2005,17(9):1405-1408. 被引量:2
  • 4ASHBY E T F D, EASTWOOD W J, ALLEN J, et al. Comparison between experiment and computer modeling for simple MILO configurations [J]. IEEE Trans. on Plasma Science, 1995, 23(6): 959-969.
  • 5MERKLE L D, Luginsland J W. Design optimization for a novel class of high power microwave sources[C]. Canberra: the 2003 Congress on Evolutionary Computation,2003.
  • 6KOSLOVER R A. Compact, broadband high power circular TM01 to TE11 Mode converter: US, 4999591[P]. 1991-03-12.
  • 7DAHLSTROM R K, HASWIN L J, RUTH B G, et al. Reflector design for an X-band vlasov antenna [J]. Int. Sym. Digest. IEEE, 1990, AP: 968-971.
  • 8COURTNEY C C, BAMM C E. The coaxial beam-rotating antenna(COBRA): theory of operation and measured performance[J]. IEEE Trans. on Antennas and Propagation, 2000, 48(2) : 299-309.
  • 9COURTNEY C C. Design and numerical simulation of coaxial beam-rotating antenna lens [J]. Electronics Letters, 2002, 38(11): 496-498.
  • 10陈代兵,范植开,周海京,高凤琴,何琥,郭焱华,王冬,王晓东,龚海涛,安海狮.L波段硬管磁绝缘线振荡器的研制[J].强激光与粒子束,2007,19(8):1352-1356. 被引量:20

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