Vol. 28

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2012-04-13

High-Gain Low Side Lobe Level Fabry Perot Cavity Antenna with Feed Patch Array

By Avinash R. Vaidya, Rajiv Kumar Gupta, Sanjeev Kumar Mishra, and Jayanta Mukherjee
Progress In Electromagnetics Research C, Vol. 28, 223-238, 2012
doi:10.2528/PIERC12031503

Abstract

In this paper, a high gain, low side lobe level Fabry Perot Cavity antenna with feed patch array is proposed. The antenna structure consists of a microstrip antenna array, which is parasitically coupled with an array of square parasitic patches fabricated on a FR4 superstrate. The patches are fabricated at the bottom of superstrate and suspended in air with the help of dielectric rods at 0.5λ0 height. Constant high gain is obtained by resonating parasitic patches at near close frequencies in 5.725-5.875 GHz ISM band. The structure with 9 × 9 square parasitic patches with 1.125λ0 spacing between feed elements is fabricated on 5λ0 × 5λ0 square ground. The fabricated structure provides gain of 21.5 dBi associated with side lobe level less than -25 dB, cross polarization less than -26 dB and front to back lobe ratio of more than 26 dB. The measured gain variation is less than 1 dB and VSWR is less than 2 over 5.725-5.875 GHz ISM band. The proposed structures are good candidates for base station cellular systems, satellite systems, and point-to-point links.

Citation


Avinash R. Vaidya, Rajiv Kumar Gupta, Sanjeev Kumar Mishra, and Jayanta Mukherjee, "High-Gain Low Side Lobe Level Fabry Perot Cavity Antenna with Feed Patch Array," Progress In Electromagnetics Research C, Vol. 28, 223-238, 2012.
doi:10.2528/PIERC12031503
http://test.jpier.org/PIERC/pier.php?paper=12031503

References


    1. Kumar, , G. , Kumar, G. and K. P. Ray, "Broadband Microstrip Antennas," Artech house, , 2003.

    2. Pozar, D. M., , S. D. Targonski, and H. Syrigos, , "Design of millimeter wave microstrip reflectarrays," IEEE Trans. Antennas Propagat.,, Vol. 45, No. 2, 287-295, 1997..
    doi:10.1109/8.560348

    3. Javor, , R. D., , X. D. Wu, and K. Chang, , "Design and performance of a microstrip reflectarray antenna," IEEE Trans. Antennas Propagat., Vol. 43, No. 9, 932-939, 1995.
    doi:10.1109/8.560348

    4. Vazquez Antuna, , C., , G. R. Hotopan, S. Ver Hoeye, M. Fernan-dez Garcia, L. F. Herran Ontanon, and F. Las-Heras, "Microstrip antenna design based on stacked patches for reconfiurable two dimensional planar array topologies," Progress In Electromagnetics Research, Vol. 97, 95-104, 2009..
    doi:10.2528/PIER09072107

    5. Trentini, , G. V., "Partially reflecting sheet arrays," IEEE Trans. Antennas Propagat.,, Vol. 4, 666-671, , 1956..

    6. Feresidis, , A. P., J. C. Vardaxoglou, and , "High gain planar antenna using optimized partially re°ective surfaces," IEE Proc. Microw. Antennas Propag., Vol. 148, 345-350, 2001..
    doi:10.1049/ip-map:20010828

    7. Kaklamani, , D. I., , "Full-wave analysis of a Fabry-Parot type resonator," Progress In Electromagnetics Research,, Vol. 24, 279-310, , 1999..
    doi:10.2528/PIER99042601

    8. Costa, , F. , A. Monorchio, and , "Design of subwavelength tunable and steerable Fabry-Parot/leaky wave antennas," Progress In Electromagnetics Research, , Vol. 111, 467 -481, 2011.
    doi:10.2528/PIER10111702

    9. Wang, , S. H., , A. P. Feresidis, G. Goussetis, and J. C. Vardaxoglou, "Low-pro¯le resonant cavity antenna with artificial magnetic conductor ground plane," Electron. Lett., , Vol. 40, No. 7, 405-406, 2004..
    doi:10.1049/el:20040306

    10. Parker, , E. A., , "The gentleman's guide to frequency selective surfaces," 17th Q.M.W. Antenna Symposium, , 1991.

    11. Boutayeb, , H., , A.-C. Tarot, and K. Mahdjoubi, "Focusing characteristics of a metallic cylindrical electromagnetic band gapstructure with defects," Progress In Electromagnetics Research,, Vol. 66, 89-103, , 2006.