期刊文献+

基于电磁带隙结构的微带天线小型化设计 被引量:1

Design of Miniaturized Microstrip Antenna Using Electromagnetic Bandgap Structures
下载PDF
导出
摘要 提出了一种确定电磁带隙结构慢波波长的分析方法,利用电磁带隙结构支持慢波传播的特性,设计了一种小型化微带天线。以"*"型电磁带隙结构作为接地板,增大了天线的相对电长度。天线工作于2 GHz,相对带宽为2.57%,最大增益为5.45 dB,相比于传统天线,该天线的尺寸减小了40%,带宽有了一定的提高。最后,进行了天线的实物制作和测试,天线的实测结果和仿真结果吻合良好。 A method to make sure wavelength of slow-wave mode of electromagnetic bandgap structures is proposed in this paper. A kind of miniaturized microstrip antenna is designed using the characteristic that electromagnetic bandgap structures support slow- wave propagation. "*" shapes electromagnetic bandgap structures are used as ground plane to increase relative electrical length. This antenna works at 2 GHz, relative bandwidth is 2.57 %and maximum gain is 5.45 dB, compared with conventional antenna, its area has reduced 40 %, and its relative bandwidth is improved . The antenna had been fabricated and measured, measured re- sult and simulated result agree very well.
出处 《现代雷达》 CSCD 北大核心 2012年第7期51-54,共4页 Modern Radar
关键词 电磁带隙结构 小型化 慢波 electromagnetic bandgap structures miniaturization slow-wave
  • 相关文献

参考文献9

  • 1刘英,龚书喜,傅德民.分形天线的研究进展[J].电波科学学报,2002,17(1):54-58. 被引量:26
  • 2Waterhouse R. Small microstrip patch antenna [ J ]. Elec- tronices Letters, 1995, 31(8): 604-605.
  • 3Wong K L, Tang C L, Chen H T. A compact meandered cir- cular microstrip antenna with a shorting pin [ J ]. Microwave and Optical Technology Letters, 1977, 15(3): 147-149.
  • 4Nikolay L Z. The road ahead for metamaterials [J]. Sci- ence, 2010,328(5978): 582-583.
  • 5Qu D, Shafai L, Foroozesh A. Improving microstrip patchantenna performance using EBG substrates [ J ]. IEE Pro- ceedings-Microwaves Antennas and Propagation, 2006, 153 (6) :558-563.
  • 6Elayachi M, Ribero J M. Planar low profile and gain en- hancement of printed antennas using EBG structures[ C ]// IEEE Antennas and Propagation Society International Sympo- sium. San Diego, CA: IEEE Press, 2008: 1-4.
  • 7Asanee S, Ramesh A. Design of a compact miniaturized probe-fed patch antenna using electromagnetic bandgap structures[ C] // IEEE Antennas and Propagation Society International Symposium. Toronto: IEEE Press, 2010. : 1-4.
  • 8ElsheakhD N, Elsadek H A, Abdallah E A, et al. Investi- gated new embedded shapes of electromagnetic bandgap structures and via effect for improved microstrip patch anten- na performance [ J ]. Applied Physics A : Materials Science & Processing, 2011,103(3) : 541-545.
  • 9史亚龙,罗春荣,赵晓鹏.S波段新型负磁导率微带天线[J].现代雷达,2009,31(9):63-66. 被引量:4

二级参考文献53

  • 1徐勤.一种宽频带微带天线的设计[J].雷达与对抗,2004,24(2):38-41. 被引量:9
  • 2张前悦,王光明,夏冬玉,王惠方.宽频带线阵天线的设计[J].现代雷达,2007,29(1):68-70. 被引量:3
  • 3Garg R, Bhartia R, Bahl I, et al. Microstrip antenna design handbook [ M ]. Boston and London : Artech House, 2001.
  • 4James J R, Hall P S. Hand book of microstrip antennas [ M ]. London, United Kingdom: Peter Peregrinus Ltd. , 1989.
  • 5Jackson D R, Alexo N G poulos. Gain enhancement methods for printed circuit antennas [ J ]. IEEE Trans. Antennas Propag, 1985,33:976 -987.
  • 6Nakano H, Ikeda M, Hitosugi K, et al. A spiral antenna sandwiched by dielectric layers [ J ]. IEEE Trans. Antennas Propag, 2004.52 : 1417 - 1423.
  • 7Coccioli R, Yang F, Ma K, et al. Aperture-coupled patch antenna on UC-PBG substrate [ J ]. IEEE Trans. Microw Theoty, 1999 . 47:2123 - 2130.
  • 8Gonzalo R, Maagt P, Sorolla M. Enhanced patch-antenna performance by suppressing surface waves using Photonic- Bandgap substrates [ J ]. IEEE Trans. Antennas Propag, 1999.47 (11) :2131 -2138.
  • 9Zhou X, Fu Q H, Zhao J, et al. Negative permeability and subwavelength focusing of quasi-periodie dendritic cell metamaterials [ J ]. Optics Express, 2006, 14:7188 - 7197.
  • 10Yao Y, Zhao X P. Multilevel dendritic structure with simultaneously negative permeability and permittivity [ J ]. J. Appl. Phys, 2007,101 : 124904.

共引文献27

同被引文献2

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