Research Article
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3.3 GHz microstip antenna design and analysis for different feeding methods

Year 2013, Volume: 17 Issue: 1, 119 - 124, 01.04.2013

Abstract

This work presents design of microstrip patch antenna for operation at 3.3 GHz using five basic feeding techniques. The antenna was intended for use next generation wireless application such as WiMax. When the proposed antenna design, patch size, dielectric material and thickness of substrate were fixed, only feeding techniques and dimensions of transmission line were changed. In this way, performance of feeding techniques was compared and was tried to design of wideband microstrip antenna. Ansoft – HFSS was used for the simulation of antenna and up to %60 wideband microstrip antennas were designed.

References

  • KURNIAWAN, A., MUKTI, P.H., A 2.3/3.3 dual band microstrip antenna design for WiMax Applications, ITB J. ICT, Vol. 4, No. 2, 67-78, 2011.
  • GARG, R., PRAKASH, B., INDER B., APİSAK, I., Microstrip Antenna Design Handbook, Artech House; pages: 1-2, 11.2000.
  • SAFRAN, M.I., K, AYDIN, E., Pek Geniş Bant Anten Tasarımı ve İmalatı, Atılım Üniversitesi, Ankara. BAZAN, G. A. S., Design of a Circularly Polarized Patch Antenna for Satellite Mobile Communications in l-Band, Polytechnic University of Cataluña, December 20 H. GUTTON AND G. BAISSINOT, Flat Aerial for Ultra High Frequencies, French Patent No. 703113, 19
  • YILDIRIM, A., YAĞCI, H. B., PAKER S., 2.4 GHz High Power Microstrip Patch Antenna Design and Realization, Telenetronics n.p.sh, Mbreti Zog 61, Prizren, Kosova, 2000.
  • BALANIS C.A., Antenna Theory Analysis and Design, John Wiley and Sons , Arizona State University ,pages: 4-6, 1982.
  • SAINATI, R. A., CAD of Microstrip Antenna for Wireless Application, Artech House, London, 1996.
  • REDDY, C.V.V., RANA, R., Design of Linearly Polarized Rectangular Microstrip Patch Antenna Using IE3D/PSO, National Institute of Technology, Rourkela, 200 SCHNEIDER, M., Microstrip Lines for Microwave Integrated Circuits, Bell. Syst. Tech. J., 48.,1968. m2 27,8 60 25,7 13 37,5 20 40 60 80 Mikroşerit CPW Koaksiyel Açıklık Yakınlık B an t G en işl iğ i
  • (%) Besleme Yöntemleri

3.3 GHz mikroşerit anten tasarımı ve farklı besleme yöntemleri için analizi

Year 2013, Volume: 17 Issue: 1, 119 - 124, 01.04.2013

Abstract

This work presents design of microstrip patch antenna for operation at 3.3 GHz using five basic feeding techniques. The antenna was intended for use next generation wireless application such as WiMax. When the proposed antenna design, patch size, dielectric material and thickness of substrate were fixed, only feeding techniques and dimensions of transmission line were changed. In this way, performance of feeding techniques was compared and was tried to design of wideband microstrip antenna. Ansoft HFSS was used for the simulation of antenna and up to %60 wideband microstrip antennas were designed.

References

  • KURNIAWAN, A., MUKTI, P.H., A 2.3/3.3 dual band microstrip antenna design for WiMax Applications, ITB J. ICT, Vol. 4, No. 2, 67-78, 2011.
  • GARG, R., PRAKASH, B., INDER B., APİSAK, I., Microstrip Antenna Design Handbook, Artech House; pages: 1-2, 11.2000.
  • SAFRAN, M.I., K, AYDIN, E., Pek Geniş Bant Anten Tasarımı ve İmalatı, Atılım Üniversitesi, Ankara. BAZAN, G. A. S., Design of a Circularly Polarized Patch Antenna for Satellite Mobile Communications in l-Band, Polytechnic University of Cataluña, December 20 H. GUTTON AND G. BAISSINOT, Flat Aerial for Ultra High Frequencies, French Patent No. 703113, 19
  • YILDIRIM, A., YAĞCI, H. B., PAKER S., 2.4 GHz High Power Microstrip Patch Antenna Design and Realization, Telenetronics n.p.sh, Mbreti Zog 61, Prizren, Kosova, 2000.
  • BALANIS C.A., Antenna Theory Analysis and Design, John Wiley and Sons , Arizona State University ,pages: 4-6, 1982.
  • SAINATI, R. A., CAD of Microstrip Antenna for Wireless Application, Artech House, London, 1996.
  • REDDY, C.V.V., RANA, R., Design of Linearly Polarized Rectangular Microstrip Patch Antenna Using IE3D/PSO, National Institute of Technology, Rourkela, 200 SCHNEIDER, M., Microstrip Lines for Microwave Integrated Circuits, Bell. Syst. Tech. J., 48.,1968. m2 27,8 60 25,7 13 37,5 20 40 60 80 Mikroşerit CPW Koaksiyel Açıklık Yakınlık B an t G en işl iğ i
  • (%) Besleme Yöntemleri
There are 8 citations in total.

Details

Primary Language Turkish
Subjects Engineering
Journal Section Research Articles
Authors

Haydar Kütük This is me

Ahmet Yahya Teşneli This is me

Nigar Berna Teşneli This is me

Publication Date April 1, 2013
Submission Date May 3, 2012
Acceptance Date September 5, 2012
Published in Issue Year 2013 Volume: 17 Issue: 1

Cite

APA Kütük, H., Teşneli, A. Y., & Teşneli, N. B. (2013). 3.3 GHz mikroşerit anten tasarımı ve farklı besleme yöntemleri için analizi. Sakarya University Journal of Science, 17(1), 119-124. https://doi.org/10.16984/saufbed.15496
AMA Kütük H, Teşneli AY, Teşneli NB. 3.3 GHz mikroşerit anten tasarımı ve farklı besleme yöntemleri için analizi. SAUJS. April 2013;17(1):119-124. doi:10.16984/saufbed.15496
Chicago Kütük, Haydar, Ahmet Yahya Teşneli, and Nigar Berna Teşneli. “3.3 GHz mikroşerit Anten tasarımı Ve Farklı Besleme yöntemleri için Analizi”. Sakarya University Journal of Science 17, no. 1 (April 2013): 119-24. https://doi.org/10.16984/saufbed.15496.
EndNote Kütük H, Teşneli AY, Teşneli NB (April 1, 2013) 3.3 GHz mikroşerit anten tasarımı ve farklı besleme yöntemleri için analizi. Sakarya University Journal of Science 17 1 119–124.
IEEE H. Kütük, A. Y. Teşneli, and N. B. Teşneli, “3.3 GHz mikroşerit anten tasarımı ve farklı besleme yöntemleri için analizi”, SAUJS, vol. 17, no. 1, pp. 119–124, 2013, doi: 10.16984/saufbed.15496.
ISNAD Kütük, Haydar et al. “3.3 GHz mikroşerit Anten tasarımı Ve Farklı Besleme yöntemleri için Analizi”. Sakarya University Journal of Science 17/1 (April 2013), 119-124. https://doi.org/10.16984/saufbed.15496.
JAMA Kütük H, Teşneli AY, Teşneli NB. 3.3 GHz mikroşerit anten tasarımı ve farklı besleme yöntemleri için analizi. SAUJS. 2013;17:119–124.
MLA Kütük, Haydar et al. “3.3 GHz mikroşerit Anten tasarımı Ve Farklı Besleme yöntemleri için Analizi”. Sakarya University Journal of Science, vol. 17, no. 1, 2013, pp. 119-24, doi:10.16984/saufbed.15496.
Vancouver Kütük H, Teşneli AY, Teşneli NB. 3.3 GHz mikroşerit anten tasarımı ve farklı besleme yöntemleri için analizi. SAUJS. 2013;17(1):119-24.

Sakarya University Journal of Science (SAUJS)