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Analysis of a Square Parasitic Antenna by Using Lumped Elements

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In this paper, a novel approach to design a parasitic antenna for an RFID application. This approach is based on using a parasite square patch near to a square patch. The square antenna is simulated by using HFSS and ADS and the proposed parasitic antenna is developed by using Lumped elements. This antenna can be integrated in an RFID TAG by using the electrical model of both antenna and IC. The size of antenna is 31mm*31mm*8.5mm.
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  • Unit of research Circuits and Electronics Systems High Frequency, Faculty of Science, University El Manar, Tunis, Tunisia, abdelhakferchichi@yahoo.fr
Bibliografia
  • [1] K. Finkenzeller, RFID Handbook, 2nd ed. Munich, Germany: Giesecke & Devrient GmbH, 2003.
  • [2] A. Galehdar, D. V. Thiel, and S. G. O’Keefe, “Antenna Efficiency Calculations for Electrically Small, RFID Antennas,” IEEE Antenna Wireless Propagation Letters, vol. 6, pp. 156-159, 2007.
  • [3] S.-L. S. Yang and K.-M. Luk, “Design of a Wide-band L-probe patch antenna for pattern reconfiguration or diversity applications,” IEEE Transactions on Antennas and Propagation, vol. 54, no. 2, 2006.
  • [4] J. Agbinya et all, “Mapping and recognition of Radio Frequency Culter in Various Environments in Australia,” International Journal of Electronics and Telecommunication, vol. 56, no. 2, pp. 137-144, June 2010.
  • [5] S. .Tedjini, T. P. Vuong, and V. Beroulle, “Antennas for RFID tags,” in Joint sOc-EUSAI conference, Grenoble, France, October 2005.
  • [6] F. Elek et all, “A Uni-Directional Ring-Slot Antenna Achieved by Using an Electromagnetic Band-Gap Surface,” IEEE Transactions On Antennas And Propagation, vol. 53, no. 1, January 2005.
  • [7] C. Balanis, Antenna Theory, Analysis and Design, 2nd ed. John Wiley & Sons, 1997.
  • [8] M. H. Varkiani et all, “Design of an Ultrawideband CPW-Fed monopole Antenna With a Band- Notch Function,” International Journal of Electronics and Telecommunication, vol. 57, no. 1, pp. 109-113, March 2011.
  • [9] R. T. Long, R. J. Dorris, S. A. Long, M. A. Khayat, and J. T. Williams, “Use of parasitic strip to produce circular polarisation and increased bandwidth for cylindrical dielectric resonator antenna,” Electronics Letters, vol. 37, no. 7, pp. 406-408, 2001.
  • [10] J. Anguera, E. Martnez, C. Puente, C. Borja, and J. Soler, “Broad-Band Dual-Frequency Microstrip Patch Antenna With Modified Sierpinski Fractal Geometry,” IEEE Transaction On Antennas And Propagation, vol. 52, no. 1, January 2004.
  • [11] N. Kumprasert and W. Kiranon, “Simple and Accurate Formula for the Resonant Frequency of the Circular Microstrip Disk Antenna,” IEEE Transaction On Antenna AND Propagation, vol. 43, no. 11, November 1995.
  • [12] A. Ferchichi, N. Fadlallah, N. Sboui, and A. Gharsallah, “Analysis and design of Printed Fractal Antenna by Using an Adequate Electrical Model,” International Journal of Communication Networks and Information Security, vol. 1, no. 3, December 2009.
  • [13] A. Ferchichi, N. Sboui, and A. Gharsallah, “An Electrical Model to Sierpenski Gasket Patch Antenna,” in The Fifth Advanced International Conference on Telecommunications, Venice/Mestre , Italy, Mai 2009, pp. 284-288.
  • [14] I. Bahl, Lumped Elements for RF and Microwave Circuits, 2nd ed. Artech House, 2003.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BWA0-0053-0030
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