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一种基于改进型高阻表面的微带天线 被引量:5

A Microstrip Antenna Based on Improved High-impedance Surface
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摘要 本文提出了一种改进型的高阻表面结构 ,将其应用于微带天线 ,可使天线增益提高 0 .9dB左右 ,背瓣降低 15dB左右 ,天线性能的提高明显优于应用普通高阻表面结构的天线 .制作了实际的天线 ,测量结果与仿真结果基本一致 . In this paper,a novel improved High-impedance Surface structure is introduced.U sing the improved structure,the gain of microstrip patch antenna is increased by about 0.9dB,and the back radiation is decreased by about 15dB.The performance i s improved much more than the antenna using normal High-impedance Surface struc ture.Several antennas are manufactured,and the measured results are basically ac cordant to simulated results.
出处 《电子学报》 EI CAS CSCD 北大核心 2005年第3期511-513,共3页 Acta Electronica Sinica
基金 国家安全重大基础 (973)预研资助项目 (No .51 30 7)
关键词 光子晶体 电磁带隙 高阻表面 表面波 增益 背瓣 photonic crystals Electromagnetic Band-gap High-impedance Surface surface wave gain back lobe
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  • 1Yablonovitch E.Inhibited spontaneous emission in solid-state physics and electronics[J].Phys Rev Lett,1987,58(20):2059-2062.
  • 2Radisic V,Qian Y,Coccioli R,et al.Novel 2-D photonic bandgap structure for microstrip lines[J].IEEE Microwave Guided Wave Lett,1998,8(2):69-71.
  • 3Tae-Yeoul Yun,Kai Chang.Uniplanar one-dimensional photonic-pandgap structures and resonators[J].IEEE Trans MTT,2001,49(3):549-553.
  • 4Matthew M Beaky,John B Burk,Henry O Everitt,et al.Two-dimentional photonic crystals fabry-perot resonators with lossy dielectrics[J].IEEE Trans MTT,1999,47(11):2085-2090.
  • 5Yasushi Horii,Makoto Tsutsumi.Harmonic control by photonic bandgap on microstrip patch antenna[J].IEEE Microwave Guided Wave Lett,1999,9(1):13-15.
  • 6V Radisic,Y Qian,T Itoh.Broad-band power amplifier using dielectric photonic bandgap structure[J].IEEE Microwave Guided Wave Lett,1998,8(1):13-14.
  • 7Marc Thevenot,Cyril Cheype,Alain Reineix,et al.Directive photonic-bandgap antennas[J].IEEE Trans MTT,1999,47(11):2115-2122.
  • 8Joseph S Colburn,Yahya Rahmat-Samii.Patch antennas on externally perforated high dielectric constant substrates[J].IEEE Trans.Antennas Propagat,1999,47(12):1785-1794.
  • 9D Sievenpiper,Lijun Zhang,R F Jimenez Broas,et al.High-impedance electromagnetic surfaces with a forbidden frequency band[J].IEEE Trans MTT,1999,47(11):2059-2074.
  • 10D Sievenpiper.High-impedance electromagnetic surfaces[D].UCLA electrical engineering department,1999.

同被引文献31

  • 1王彤.PBG结构在有源微带天线中的应用[J].电子科技,2004,17(10):38-40. 被引量:1
  • 2李英明,钟顺时.新型光子带隙微带贴片天线[J].微波学报,2005,21(3):39-42. 被引量:5
  • 3张冶文,宋文仙,廖海涛,李宏强,陈鸿.基于局域共振机制的平面型金属-电介质电磁波带隙结构的实验研究[J].微波学报,2006,22(2):21-25. 被引量:2
  • 4闫敦豹,付云起,张国华,高强,袁乃昌.EBG结构在微带天线阵中的应用[J].微波学报,2005,21(B04):75-78. 被引量:20
  • 5Brown E R, Parker C D, Yablonovitch E. Radiation Properties of a Planar Antenna on a Photonic - crystal Substrate [J]. Opt. Soc. Am. B,1993,10(2):404 -407.
  • 6Qian Yongxi. A Mocrostrip Patch Antenna Using Novel Photonic Bandgap Structure[J]. Microwave Journal, 1999: 221 - 224.
  • 7Marc Thevenot. Directive Photonie Bandgap Antenna[J].IEEE Trans. on Microwave Theory and Techniques, 1999, 47(11):2 115-2 121.
  • 8Zhang Lijun. Numerical Characterization of Electromagnetic Bandgap Materials and Applications in Printed Antennas and Arrays[D]. University of California at Los Angles,2000.
  • 9朱方明.新型电磁(光子)晶体贴片天线的研究[D].杭州:浙江大学,2008.
  • 10BROWN E R,PARKER C D, YABLONOVITCH E. Radiation properities of a planar antenna on a photonic-crystal sub strate [J]. Optical Society of America B, 1993,10(2) :404-407.

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