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Design of an E-Shaped Microstrip GPS Antenna Operating at L1 Frequency

Year 2014, Volume: 19 Issue: 1, 15 - 26, 01.04.2014

Abstract

In this study, the E-shaped microstrip antenna, which has been widely used as a special type of microstrip antenna in the recent years along with the developing technology, is analyzed. Two parallel slots are added to the patch of antenna and these slots are integrated with the resonance frequencies and the bandwidth. The optimization of the antenna is assured with the parameterization of slot dimensions, with the length of 20 mm and the width of 47 mm. The high-gain E-shaped microstrip GPS antenna, which operates at L1 frequency (1575.42 MHz) and covering the 1550 MHz to 1605 MHz band, has been designed. Consequently, E-shaped microstrip antenna design, resonating at civilian GPS frequency (L1, 1575.42 GHz) with 3.5% bandwidth, was obtained; and its specifications were extracted by means of the simulations using the CST-MWS software package

References

  • Ang, B.-K., and Chung, B.-K. (2007). A Wideband E-Shaped Microstrip Patch Antenna for 5-6 GHz Wireless Communications, Progress in Electromagnetics Research – PIER, vol. 75, pp. 397-407.
  • Archevapanich, T., Nakasuwan, J., Songthanapitak, N., Anantrasirichai, N., and Wakabayashi, T. (2007). E-Shaped Slot Antenna for WLAN Applications, PIERS Online, vol. 3, no. 7, pp. 1119-1123.
  • Balanis, C.A. (2005). Antenna Theory Analysis and Design, John Wiley & Sons, New York.
  • Bhattacharyya, A.K., Shafai, L and Gary, R. (1991). Microstrip Antenna – A Generalized Transmission Line, Progress in Electromagnetic Research, vol. 4, pp. 45-84.
  • Carver, K. and Mink, J.W. (1981). Microstrip Antenna Technology, IEEE Transactions on Antennas and Propagation, vol. 29, pp.2-24.
  • Faiza, Z., Ali, M.T., Subahir S., and Yusof A.L. (2012). Design of Reconfigurable Dual- Band E-Shaped Microstrip Patch Antenna, International Conference on Computer and Communication Engineering (ICCCE 2012), pp. 113-117.
  • Gaur, N. and Soni, D. (2012). E-Shaped Slotted Microstrip Antenna with Enhanced Gain for Wireless Communication, International Journal of Electronics and Computer Science Engineering, vol. 1, no. 2, pp. 436-441.
  • Guterman, J., Moreira, A.A., Peixeiro C., and Rahmat-Samii, Y. (2009). Reconfigurable E- Shaped Patch Antennas, IEEE International Workshop on Antenna Technology (iWAT 2009), pp. 1-3.
  • Günel, T. (2011). Modified Resonant Frequency Calculation for E-Shaped and H-Shaped Microstrip Patch Antennas, Microwave and Optical Technology Letters, vol. 53, no. 10, pp. 2348-2351.
  • Kumar, G. and Gupta, K.C. (1985). Directly coupled multiple resonator wide band microstrip antenna, IEEE Transactions on Antennas and Propagation, vol. AP-33, pp. 588-593.
  • Lin, W., Xie, X.-Q., Bo, Y., and Feng, L. (2011). Design of a broadband E-shaped microstrip antenna, 2011 Cross Strait Quad-Regional Radio Science and Wireless Technology Conference, pp. 386-388.
  • Patel, S.S., Soni, H.B., Patel, S.K., and Kosta, Y.P. (2011). E-shaped Patch Antenna Analysis for Multiple Applications, 2011 3rd International Conference on Electronics Computer Technology (ICECT), vol. 5, pp. 258-263.
  • Pozar, D.M. (1992). Microstrip Antennas, Proceedings of the IEEE, vol. 80, no. 1, pp. 79- 81.
  • Rao, G.P., Agarwal, K., Kartikeyan M.V., and Thumm, M. K. (2006). Wideband Single Patch E-Shaped Compact Microstrip Antenna for High Speed Wireless Local Area Networks”, German Microwave Conference, pp. 1-3.
  • Sullivan, P.L. and Schaubert, D.H. (1986). Analysis of An Aperture Coupled Microstrip Antenna, IEEE Transactions on Antennas and Propagation, vol. 34, pp. 977-984.
  • Tansarıkaya, İ. (2007). Geniş Bandlı Yama Anten Tasarımı, Yüksek Lisans Tezi, İstanbul Teknik Üniversitesi Fen Bilimleri Enstitüsü.
  • Toktaş, A. ve Akdağlı, A. (2012). E Şekilli Kompakt Mikroşerit Antenlerin Rezonans Frekansının Hesaplanması, Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi, cilt 27, no. 4, 847-854.
  • Virga, K.L. and Rahmat-Samii, Y. (1997). Low Profile Enhanced-Bandwidth PIFA Antennas for Wireless Communications Packaging, IEEE Transactions on Antennas and Propagation, vol. 45, pp. 1879-1888.
  • Yang, F., Zhang, X.X., Ye, X., and Rahmat-Samii Y. (2001). Wideband E-Shaped Patch Antennas for Wireless Communications, IEEE Transactions on Antennas and Propagation, vol. 49, pp. 1094-1100.
  • Yau, D. and Shuley, N.V. (1998). Numerical Analysis of An Aperture Coupled Microstrip Patch Antenna Using Mixed Potential Integral Equations and Complex Images, Progress in Electromagnetic Research, vol. 18, pp. 229-244.
  • Zhang, X.-X. and Yang, F. (1998). The Study of Slit Cut on The Microstrip Antenna and Its Applications, Microwave and Optical Technology Letters, vol. 18, no. 4, pp. 297-300.
  • Makale 22.04.2013 tarihinde alınmış, 19.11.2013 tarihinde düzeltilmiş, 25.02.2014 tarihinde kabul edilmiştir.

L1 Frekansında Çalışan E-Şekilli Mikroşerit GPS Anteni Tasarımı

Year 2014, Volume: 19 Issue: 1, 15 - 26, 01.04.2014

Abstract

Bu çalışmada, son yıllarda gelişen teknoloji ile birlikte mikrodalga antenleri içerisinde kullanım alanı oldukça yaygınlaşan mikroşerit antenlerin özel bir çeşidi olan E-şekilli mikroşerit anten yapısı incelenmiştir. E-şekilli mikroşerit antende, anten yamasına iki paralel yarık eklenmiş, bu yarıklar rezonans frekansları ve bant-genişliği ile ilişkilendirilmiştir. Yarık boyutları, uzunlukları 20 mm ve genişlikleri 47 mm olacak şekilde parametrize edilerek antenin optimizasyonu sağlanmıştır. L1 frekansında çalışan (1575.42 MHz) ve 1550 MHz – 1605 MHz frekans bandını kapsayan yüksek kazançlı E-şekilli mikroşerit GPS anteni tasarlanmıştır. Sonuç olarak, GPS uygulaması için %3.5’lik bant-genişliğine sahip, sivil GPS frekansında (L1, 1575.42 GHz) rezonansa giren E-şekilli mikroşerit anten tasarımı elde edilmiş ve spesifikasyonları CST-MWS yazılımında yapılan simülasyonlar ile tespit edilmiştir

References

  • Ang, B.-K., and Chung, B.-K. (2007). A Wideband E-Shaped Microstrip Patch Antenna for 5-6 GHz Wireless Communications, Progress in Electromagnetics Research – PIER, vol. 75, pp. 397-407.
  • Archevapanich, T., Nakasuwan, J., Songthanapitak, N., Anantrasirichai, N., and Wakabayashi, T. (2007). E-Shaped Slot Antenna for WLAN Applications, PIERS Online, vol. 3, no. 7, pp. 1119-1123.
  • Balanis, C.A. (2005). Antenna Theory Analysis and Design, John Wiley & Sons, New York.
  • Bhattacharyya, A.K., Shafai, L and Gary, R. (1991). Microstrip Antenna – A Generalized Transmission Line, Progress in Electromagnetic Research, vol. 4, pp. 45-84.
  • Carver, K. and Mink, J.W. (1981). Microstrip Antenna Technology, IEEE Transactions on Antennas and Propagation, vol. 29, pp.2-24.
  • Faiza, Z., Ali, M.T., Subahir S., and Yusof A.L. (2012). Design of Reconfigurable Dual- Band E-Shaped Microstrip Patch Antenna, International Conference on Computer and Communication Engineering (ICCCE 2012), pp. 113-117.
  • Gaur, N. and Soni, D. (2012). E-Shaped Slotted Microstrip Antenna with Enhanced Gain for Wireless Communication, International Journal of Electronics and Computer Science Engineering, vol. 1, no. 2, pp. 436-441.
  • Guterman, J., Moreira, A.A., Peixeiro C., and Rahmat-Samii, Y. (2009). Reconfigurable E- Shaped Patch Antennas, IEEE International Workshop on Antenna Technology (iWAT 2009), pp. 1-3.
  • Günel, T. (2011). Modified Resonant Frequency Calculation for E-Shaped and H-Shaped Microstrip Patch Antennas, Microwave and Optical Technology Letters, vol. 53, no. 10, pp. 2348-2351.
  • Kumar, G. and Gupta, K.C. (1985). Directly coupled multiple resonator wide band microstrip antenna, IEEE Transactions on Antennas and Propagation, vol. AP-33, pp. 588-593.
  • Lin, W., Xie, X.-Q., Bo, Y., and Feng, L. (2011). Design of a broadband E-shaped microstrip antenna, 2011 Cross Strait Quad-Regional Radio Science and Wireless Technology Conference, pp. 386-388.
  • Patel, S.S., Soni, H.B., Patel, S.K., and Kosta, Y.P. (2011). E-shaped Patch Antenna Analysis for Multiple Applications, 2011 3rd International Conference on Electronics Computer Technology (ICECT), vol. 5, pp. 258-263.
  • Pozar, D.M. (1992). Microstrip Antennas, Proceedings of the IEEE, vol. 80, no. 1, pp. 79- 81.
  • Rao, G.P., Agarwal, K., Kartikeyan M.V., and Thumm, M. K. (2006). Wideband Single Patch E-Shaped Compact Microstrip Antenna for High Speed Wireless Local Area Networks”, German Microwave Conference, pp. 1-3.
  • Sullivan, P.L. and Schaubert, D.H. (1986). Analysis of An Aperture Coupled Microstrip Antenna, IEEE Transactions on Antennas and Propagation, vol. 34, pp. 977-984.
  • Tansarıkaya, İ. (2007). Geniş Bandlı Yama Anten Tasarımı, Yüksek Lisans Tezi, İstanbul Teknik Üniversitesi Fen Bilimleri Enstitüsü.
  • Toktaş, A. ve Akdağlı, A. (2012). E Şekilli Kompakt Mikroşerit Antenlerin Rezonans Frekansının Hesaplanması, Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi, cilt 27, no. 4, 847-854.
  • Virga, K.L. and Rahmat-Samii, Y. (1997). Low Profile Enhanced-Bandwidth PIFA Antennas for Wireless Communications Packaging, IEEE Transactions on Antennas and Propagation, vol. 45, pp. 1879-1888.
  • Yang, F., Zhang, X.X., Ye, X., and Rahmat-Samii Y. (2001). Wideband E-Shaped Patch Antennas for Wireless Communications, IEEE Transactions on Antennas and Propagation, vol. 49, pp. 1094-1100.
  • Yau, D. and Shuley, N.V. (1998). Numerical Analysis of An Aperture Coupled Microstrip Patch Antenna Using Mixed Potential Integral Equations and Complex Images, Progress in Electromagnetic Research, vol. 18, pp. 229-244.
  • Zhang, X.-X. and Yang, F. (1998). The Study of Slit Cut on The Microstrip Antenna and Its Applications, Microwave and Optical Technology Letters, vol. 18, no. 4, pp. 297-300.
  • Makale 22.04.2013 tarihinde alınmış, 19.11.2013 tarihinde düzeltilmiş, 25.02.2014 tarihinde kabul edilmiştir.
There are 22 citations in total.

Details

Primary Language Turkish
Journal Section Research Articles
Authors

Sertaç Erdemir This is me

Asım Egemen Yılmaz This is me

Publication Date April 1, 2014
Submission Date December 19, 2014
Published in Issue Year 2014 Volume: 19 Issue: 1

Cite

APA Erdemir, S., & Yılmaz, A. E. (2014). L1 Frekansında Çalışan E-Şekilli Mikroşerit GPS Anteni Tasarımı. Uludağ Üniversitesi Mühendislik Fakültesi Dergisi, 19(1), 15-26. https://doi.org/10.17482/uujfe.71259
AMA Erdemir S, Yılmaz AE. L1 Frekansında Çalışan E-Şekilli Mikroşerit GPS Anteni Tasarımı. UUJFE. April 2014;19(1):15-26. doi:10.17482/uujfe.71259
Chicago Erdemir, Sertaç, and Asım Egemen Yılmaz. “L1 Frekansında Çalışan E-Şekilli Mikroşerit GPS Anteni Tasarımı”. Uludağ Üniversitesi Mühendislik Fakültesi Dergisi 19, no. 1 (April 2014): 15-26. https://doi.org/10.17482/uujfe.71259.
EndNote Erdemir S, Yılmaz AE (April 1, 2014) L1 Frekansında Çalışan E-Şekilli Mikroşerit GPS Anteni Tasarımı. Uludağ Üniversitesi Mühendislik Fakültesi Dergisi 19 1 15–26.
IEEE S. Erdemir and A. E. Yılmaz, “L1 Frekansında Çalışan E-Şekilli Mikroşerit GPS Anteni Tasarımı”, UUJFE, vol. 19, no. 1, pp. 15–26, 2014, doi: 10.17482/uujfe.71259.
ISNAD Erdemir, Sertaç - Yılmaz, Asım Egemen. “L1 Frekansında Çalışan E-Şekilli Mikroşerit GPS Anteni Tasarımı”. Uludağ Üniversitesi Mühendislik Fakültesi Dergisi 19/1 (April 2014), 15-26. https://doi.org/10.17482/uujfe.71259.
JAMA Erdemir S, Yılmaz AE. L1 Frekansında Çalışan E-Şekilli Mikroşerit GPS Anteni Tasarımı. UUJFE. 2014;19:15–26.
MLA Erdemir, Sertaç and Asım Egemen Yılmaz. “L1 Frekansında Çalışan E-Şekilli Mikroşerit GPS Anteni Tasarımı”. Uludağ Üniversitesi Mühendislik Fakültesi Dergisi, vol. 19, no. 1, 2014, pp. 15-26, doi:10.17482/uujfe.71259.
Vancouver Erdemir S, Yılmaz AE. L1 Frekansında Çalışan E-Şekilli Mikroşerit GPS Anteni Tasarımı. UUJFE. 2014;19(1):15-26.

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