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Experimental Analysis of Quasi-Yagi Antenna Shapes

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Warianty tytułu
PL
Analiza eksperymentalna pięciu szerokopasmowych anten typu Quasi-Yagi
Języki publikacji
EN
Abstrakty
EN
In this work, a broadband quasi-Yagi antenna is presented and its shape design is changed to analyse new characteristics and properties for wireless communications. This microstrip-fed antenna is designed in five different shape versions: dipole driver, patch driver, meander driver, log-periodic director array, and multi-director array. Details of the proposed designs and measured results of input return loss and radiation pattern are presented and discussed. In addition, a technique using a microwave link to measure the radiation pattern is explored, showing good radiation characteristic of the elements in a real environment.
PL
Przedstawiono analizę i projekt nowej anteny szerokopasmowej typu Yagi przeznaczonej do komunikacji bezprzewodowej. Antenę zaprojektowano w pięciu różnych wersjach kształtu. Przedstawiono wyniki badań tych propozycji.
Rocznik
Strony
100--104
Opis fizyczny
Bibliogr. 28 poz., rys., tab., wykr.
Twórcy
  • Universidade Federal do ABC, Rua Santa Adélia, 166 - CEP 09.210-170, Santo André -SP
autor
  • Universidade Federal de São João del-Rei, Rod.: MG 443, KM 7 - CEP: 36.420-000, Ouro Branco - MG
  • Universidade Federal do ABC, Rua Santa Adélia, 166 - CEP 09.210-170, Santo André -SP
autor
  • Universidade Estadual de Campinas, Av. Albert Einstein - 400 - CEP: 13.083-852, Campinas - SP
Bibliografia
  • [1] R. Garg, P. Bhartia, I. Bahl, and A. Ittipiboon, Microstrip Antenna Design Handbook. Artech House, 2001.
  • [2] K. R. Carver and J. Mink, “Microstrip antenna technology,” IEEE Transactions on Antennas and Propagation, vol. 29, no. 1, pp. 2–24, 1981.
  • [3] L. C. Kretly, A. C. Sodre, and A. S. Tavora, “A hexagonal antenna array prototype for adaptive system application,” IEEE International Symposium on Wireless Personal Multimedia Communications, pp. 757–761, October 2002.
  • [4] W. R. Deal, N. Kaneda, J. Sor, Y. Qian, and T. Itoh, “A new quasi-yagi antenna for planar active antenna arrays,” IEEE Transactions on Microwave Theory and Techniques, vol. 48, no. 06, pp. 910–418, June 2000.
  • [5] C. E. Capovilla, “Antenas planares aplicadas as comunicacoes moveis de ultimas geracoes utilizado elementos quasi-yagi,” M.Sc. Dissertation, University of Campinas, 2004.
  • [6] Y. Qian, W. R. Deal, N. Kaneda, and T. Itoh, “Microstrip-fed quasi-yagi antenna with broadband characteristics,” Electronics Lett., vol. 34, no. 23, pp. 2194–2196, 1998.
  • [7] “A uniplanar quasi-yagi antenna with bandwidth and low mutual coupling characteristics,” IEE AP-S Int. Symp. Digest, p. 924, 1999.
  • [8] P. T. Nguyen, A. Abbosh, and S. Crozier, “Wideband and compact quasi-yagi antenna integrated with balun of microstrip to slotline transitions,” Electronics Letters, vol. 49, no. 02, pp. 1–2, 2013.
  • [9] A. Abbosh, “Ultra-wideband quasi-yagi antenna using dualresonant driver and integrated balun of stepped impedance coupled structure,” IEEE Transactions on Antennas and Propagation, vol. PP, no. 2013, 2013.
  • [10] N. Nikolic and A. R. Weily, “Compact e-band planar quasi-yagi antenna with folded dipole driver,” IET Microwave, Antennas, and Propagation, vol. 04, pp. 1728–1734, 2010.
  • [11] Y. Ding, Y. Jiao, P. Fei, B. Li, and Q. T. Zhang, “Design of a multiband quasi-yagi-type antenna with cpw-to-cps transition,” IEEE Antenas and Wireless Propagation Letters, vol. 10, pp. 1120–1123, 2011.
  • [12] P. Qin, A. R. Weily, Y. J. Guo, T. S. Bird, and C. Liang, “Frequency reconfigurable quasi-yagi folded dipole antenna,” IEEE Antenas and Wireless Propagation Letters, vol. 58, pp. 2742–2747, 2010.
  • [13] C. Choeysakul, S. Chaimool, and P. Akkaraekthalin, “Ultrawideband log-periodic series-fed printed dipole arrays antenna,” Proceedings of ISAP2007, Niigata, Japan.
  • [14] W. Anantapreecha, N. Duangkha, S. Pattichart, and D.Eungdamrong, “Novel e-shaped driver based on the quasi-yagi antenna,” The 9th International Conference on Advanced Communication Technology, vol. 05, pp. 894 – 896, 2007.
  • [15] H. K. Kan, A. Abbosh, R. B. Waterhouse, and M. E. Bialkowski, “Compact broadband coplanar waveguide-fed curved quasiyagi antenna,” IET Microwaves, Antennas and Propagation, vol. 01, pp. 572–574, 2007.
  • [16] Y. Cai, Y. J. Guo, and A. R. Weily, “Frequency reconfigurable quasi-yagi folded dipole antenna,” IEEE Antenas and Wireless Propagation Letters, vol. 09, 2010.
  • [17] P. Qin, C. Ding, and Y. J. Guo, “A high-gain beam-steering quasi-yagi antenna,” Proceedings of ISAP2012, Nagoya, Japan, 2012.
  • [18] H. J. Song, M. E. Bialkowski, and P. Kabacik, “Parameter study of a broadband uniplanar quasi-yagi antenna,” 13th International Conference on Microwaves, Radar and Wireless Communications, vol. 01, pp. 166–169, 2000.
  • [19] L. C. Kretly and C. E. Capovilla, “A novel antenna array based on quasi-yagi element for adaptive wireless system applications,” IEEE International Microwave and Optoelectronics Conference, vol. 01, pp. 307–312, September 2003.
  • [20] “Patches driver on the quasi-yagi antenna: Analyses of bandwidth and radiation pattern,” IEEE International Microwave and Optoelectronics Conference, vol. 01, pp. 313–316, September 2003.
  • [21] “A modified quasi-yagi antenna with meander shape on driver for wlan applications,” IEEE International Symposium on Antenna Technology and Applied Electromagnetics, September 2005.
  • [22] J. Rashed and C.-T. Tai, “A new class of resonant antennas,” IEEE Transactions on Antennas and Propagation, vol. 39, pp. 1428–1430, September 1991.
  • [23] C. A. Balanis, Antenna Theory: Analysis and Design, 2nd ed. John Wiley & Sons, 1997.
  • [24] J. D. Kraus, Antennas, 2nd ed. McGraw-Hill, 1988.
  • [25] L. C. Godara, Handbook of Antennas in Wireless Communications. CRC Press, 2002.
  • [26] W. L. Stutzman and G. A. Thiele, Antenna Theory and Design. John Wiley & Sons, 1998.
  • [27] P. Salonen, L. Sydanheimo, M. Keskilammi, and M. Kivikoski, “A small planar inverted-f antenna for wearable applications,” IEEE - Third International Symposium on Wearable Computers, pp. 95–100, 1999.
  • [28] H. Arai, Measurement of a Mobile Antenna Systems. Artech House, 2001.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-94d8ea39-4d17-4f9d-a20d-db669e7d1892
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