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一种新型紧凑宽带平面电磁带隙结构

刘涛 曹祥玉 马嘉俊

刘涛, 曹祥玉, 马嘉俊. 一种新型紧凑宽带平面电磁带隙结构[J]. 电子与信息学报, 2009, 31(4): 1007-1009. doi: 10.3724/SP.J.1146.2007.01945
引用本文: 刘涛, 曹祥玉, 马嘉俊. 一种新型紧凑宽带平面电磁带隙结构[J]. 电子与信息学报, 2009, 31(4): 1007-1009. doi: 10.3724/SP.J.1146.2007.01945
Liu Tao, Cao Xiang-yu, Ma Jia-jun. A Novel Compact Wideband Planar Electromagnetic Band-Gap Structure[J]. Journal of Electronics & Information Technology, 2009, 31(4): 1007-1009. doi: 10.3724/SP.J.1146.2007.01945
Citation: Liu Tao, Cao Xiang-yu, Ma Jia-jun. A Novel Compact Wideband Planar Electromagnetic Band-Gap Structure[J]. Journal of Electronics & Information Technology, 2009, 31(4): 1007-1009. doi: 10.3724/SP.J.1146.2007.01945

一种新型紧凑宽带平面电磁带隙结构

doi: 10.3724/SP.J.1146.2007.01945
基金项目: 

国家自然科学基金(60671001)、空军工程大学电讯工程学院博士创新基金(200603)、陕西省自然科学基础研究(2005F21)和西安市工业攻关项目(GG06020)资助课题

A Novel Compact Wideband Planar Electromagnetic Band-Gap Structure

  • 摘要: 针对一般谐振型电磁带隙结构相对带宽比较窄的特点,依据电磁带隙结构带隙形成机理和等效电路分析模型,该文提出了一种基于低介电常数低成本基底的紧凑宽带平面电磁带隙结构。实验结果表明,新结构具有54.1%的相对带宽,相比文献结构有超过100%的相对带宽改善,并且中心频率降低了25.2%,达到了实现紧凑宽带UC-EBG结构的目的。
  • Yu Ang and Zhang Xuexia. A novel method to improve theperformance of microstrip antenna arrays using a dumbbellEBG structure[J].IEEE Antennas and Wireless PropagationLetters.2003, 2:170-172[2]郑秋容, 袁乃昌, 付云起. 紧凑型电磁带隙结构在短路微带天线中的应用. 电 子 与 信 息 学 报, 2007, 29(6): 1500-1502.Zheng Qiu-rong, Yuan Nai-chang, and Fu Yun-qi.Application of compact Electromagnetic Band-Gap structureto shorted microstrip antenna. Journal of Electronics Information Technology, 2007, 29(6): 1500-1502.[3]Yang F, Ma K, Qian Y, and Itoh T. An uni-planar compactphotonic-band gap (UC-PBG) structure and its applicationsfor microwave circuits[J].IEEE Trans. on Microwave Theoryand Tech.1999, 47(8):1509-1514[4]Coccioli R, Yang F R, Ma K, and Itoh T. Aperture-coupledpatch antenna on UC-PBG substrate[J].IEEE Trans. onMicrowave Theory and Tech.1999, 47(11):2123-2130[5]Yang F and Rahmat-samii Y. Microstrip antennas integratedwith electromagnetic band-gap structures: A low mutualcoupling design for array applications[J].IEEE Trans. onAntenna Propagation.2003, 51(10):2936-2946[6]Iluz Zeev, Shavit Reuven, and Bauer Reuven. Microstripantenna phased array with Electromagnetic Band-Gapsubstrate[J].IEEE Trans. on Antenna Propagation.2004, 52(6):1446-1453[7]Abedin M F and Ali M. Effects of a smaller unit cell PlanarEBG structure on the mutual coupling of a printed dipolesrray[J].IEEE Antennas and Wireless Propagation Letters.2005, 4:274-276[8]Yang F, Ma K, Qian Y, and Itoh T. A novel TEM waveguideusing uniplanar compact photonic-bandgap (UC-PBG)structure[J].IEEE Trans. on Microwave Theory and Tech.1999, 47(11):2092-2097[9]Fu Y, Yuan N, and Zhang G. Compact high-impedancesurfaces incorporated with interdigital structure. ElectronicLetters, 2004, 40(5): 310-311.[10]Lin B Q, Cao X Y, Yang Y M, and Wen X. Compact highimpedancesurfaces integrated with rhombic interdigitalstructure[J].Electronics Letters.2007, 43(20):1100-1101[11]Lin B Q, Zheng Q R, and Yuan N. A novel planar PBGstructure for size reduction[J].IEEE Microwave and WirelessComponents Letters.2006, 16(5):269-271[12]Tse S, Izquierdo B Sanz, Batchelor J C, and Langley R J.Reduced sized cells for electromagnetic bandgap structures[J].Electronics Letters.2003, 39(24):1699-1701[13]Sievenpiper D. High-impedance electromagnetic surfaces.[Ph. D. dissertation], Dept. Electrical Engineering, Univ.California, Los Angeles, CA, 1999.
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出版历程
  • 收稿日期:  2007-12-21
  • 修回日期:  2008-05-14
  • 刊出日期:  2009-04-19

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