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Corners Truncated Square Multiband Microstrip Patch Antenna Design

Shobhit K. Patel, Y.P. Kosta

Abstract


The area of micro strip antennas has seen some inventive work in recent years and is currently one of the most dynamic fields of antenna theory. Mobile personal communication systems and wireless computer networks are commonly used nowadays and they need antennas in different frequency bands. The design adopts patch structure and introducing the novel truncated patch offering multiband applications. The proposed patch has a compact dimension. The antenna works on four bands having center frequencies, 5.6, 7.1, 8,1, and 9.5 GHz. The design is suitable for applications in C-band and X-band Communications. Design results are obtained by a HFSS (High Frequency Structure Simulator) which is used for simulating microwave passive components.

Keywords


Microstrip Patch Antenna, Multiband, C-Band, X-Band

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References


Rowell, C. R. and R. D. Murch, “A capacitively loaded PIFA for compact mobile telephone handsets," IEEE Trans. Antennas Propag., Vol. 45, 837{842, May 1997.

Lui, G. K. H. and R. D. Murch, " Compact dual frequency PIFA Designs using LC resonator," IEEE Trans. Antennas Propag. Vol. 49, 1016{1019, July 2001.

K.Yu and I.J. B. Otterstem, "Models for MIMO propagation channels: a review, Wireless Communications and Mobile Computing, vol. 2, no. 7, pp. 653-666, November 2002.

R. Vaughan and J. B. Anderson, " Channels, Propagation and Antennas for Mobile Communications, “IEE, London, 2003.

Jung, M., Y. Kim, and B. Lee, “Dual frequency meandered PIFA for bluetooth and WLAN applications," Proc. IEEE Antennas Propag. Soc. Int. Symp., Vol. 2, 958{961, June 2003.

Patel, S., Bhalani, J., Kosta, Y.P, Patel,S., "Design of Microstrip Meandered Patch Antenna for Mobile Communication" Communications in Computer and Information Science, 1, Volume 147, Information Technology and Mobile Communication, Part 1, Pages 184-189

Deshpande, M. D. and M. C. Bailey, " Analysis of stub loaded microstrip patch antennas," Proc. IEEE Antennas Propag. Soc.Int. Symp., Vol. 2, 916{919, July 1997.

Cho, Y. J., S. H. Hwang, and S.-O. Park, " A dual-band internal antenna with a parasitic patch for mobile handsets and the consideration of the handset case and battery," IEEE Antennas Wireless Propag. Lett., Vol. 4, 429{432, 2005.

Song, C. T., C. K. Mak, R. D. Murch, and P. B. Wong, "Compact low cost dual polarized adaptive planar phased array for WLAN," IEEE Trans. Antennas Propag., Vol. 53, 2406{2416, August 2005.

Ciais, P., R. Staraj, G. Kossiavas, and C. Luxey, " Compact internal multiband antenna for mobile phone and WLAN standards," Electron. Lett., Vol. 40, 920{921, July 2004.

Rowell, C., A. Mak, and C. L. Mak, " Isolation between multiband antennas," Proc. IEEE APS/URSI/AMEREM Int. Symp., 551{ 559, Albuquerque, July 2006.

Faraone, A. and C. D. Nallo, “Mobile phone multi-band antenna employing a volume re-use concept," Proc. IEEE APS/URSI/AMEREM Int. Symp., 561, Albuquerque, July 2006.

G.S. Binoy, C.K. Aanandan, P. Mohanan, and K. Vadudevan," Square microstrip slot antenna with chip capacitor loading for dual frequency operation, IEEE AP-S Symp Dig 2001, vol. 4, pp. 90–93.

C.-S. Hong, " Small annular slot antenna with capacitor loading, " Electron Lett 36 (2000), 110–111.

C.R. Rowell and R.D. Murch, " A compact PIFA suitable for dual frequency 900/1800-MHz operation, " IEEE Trans Antennas Propagat 46 (1998), 596–598.

Z.D. Liu, P.S. Hall, and D. Wake, " Dual-frequency planar inverted-antenna, " IEEE Trans Antennas Propagat 45 (1997), 1451–1458.

S.C. Gao, L.W. Li, T.S. Yeo, and M.S. Leong, " A dual-frequency small microstrip antenna, " IEEE AP-S Symp Dig 2001, pp. 86–89.

S.-T. Fang and J.-W. Sheen, " A planar triple-band antenna for GSM/ DCS/GPS operation, " IEEE AP-S Symp Dig 2001, pp. 136–139.

R.V.H. Prasad, Y. Purushottam, V.C. Mistra, and N. Ashok, "Microstrip fractal patch antenna for multi-band communication, " Electron Lett36 (2000), 1179–1180.

Z. Du, K. Gong, J.S. Fu, and B. Gao, " Analysis of microstrip fractal patch antenna for multi-band communication, " lectron Lett 37 (2001), 805–806.

A.F. Sheta, " A novel H-shaped patch antenna, " Microwve Opt Technol Lett 29 (2001), 62–65.


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