Design of Microstrip Antenna for Satellite Applications at K-Band

Authors(2) :-V. Nagaraja, Dr. B Anuradha

The Abstract-Satellite application's five-band microstrip patch antenna is suggested, and it is modelled using the HFSS studio software. The suggested microstrip patch antenna is constructed using templates that are square and rectangular in shape. The most crucial component of virtually every wireless advanced communication system is the microstrip patch antenna, which is crucial in transforming electrical signals into EM wave signals for electromagnetic transmission. This work develops an antenna that can function in the Ku/k/ku bands at frequencies between 10 GHz and 40 GHz. The majority of antennas for satellite applications are designed to have good wide bandwidth, high gain, and small size characteristics. Adjust and perfect the length using a rectangle and square patch of 4.3-4.4 dielectric constant substrate. Resize and improve the field's length; The microstrip patch antenna is made to operate in several frequency bands, including the ku, k, and ka bands.

Authors and Affiliations

V. Nagaraja
M. Tech, Department of ECE, S V U College of Engineering, Tirupati, Andhra Pradesh, India
Dr. B Anuradha
Professor, Department of ECE, S V U College of Engineering, Tirupati, Andhra Pradesh, India

K-BAND, HFSS, RF, MIMO, BEAM WIDTH

  1. R. Garg, P. Bhartia, I. Bahl, and A. Ittipiboon, Microstrip Antenna Design Handbook, Artech House Publishers, Boston, London, 2001.
  2. R. Ludwig and P. Bretchko, RF Circuit Design: Theory and Applications, 2nd ed., 2009.
  3. Principles Of Electromagnetics ,6th edition Mathew N.O.Sadiku,S.V..kulkarni
  4. I. J. Bahl and P. Bhartia, Microstrip Antennas, Artech House, 1980.
  5. C. G. Christodoulou and P. F. Wahid, Fundamentals of Antennas: Concepts and Applications, Prentice Hall of India, 2004.
  6. F. Yang and Y. Rahmat-Samii, Electromagnetic Band Gap Structures in Antenna Engineering, Cambridge University Press, 2009.
  7. K. F. Lee, K. M. Luk, and H. W. Lai, Microstrip Patch Antennas, World Scientific, 2017.
  8. B. S. Kumar, “Design and optimization of microstrip patch antenna for satellite applications,” International Journal of Research, vol. 7, no. 9, pp. 369-373, 2018.
  9. A. Kandwal, "Compact dual-band antenna design for Ku/Ka-band applications," Advanced Electromagnetics, vol. 7, no. 4, pp. 1-5, 2017.
  10. S. C. Pavone, G. S. Mauro, L. D. Donato, and G. Sorbello, “Design of dual circularly polarized sequentially-fed patch antennas for satellite applications,” Applied Sciences, vol. 10, no. 6, pp. 1-11, 2020.
  11. S. Viesse, S. Asadi, and M. K. Hedayati, “A novel compact defected ground structure and its application in mutual coupling reduction of a microstrip antenna,” Turkish Journal of Electrical Engineering and Computer Science, vol. 24, pp. 3664-3670, 2016.
  12. K. Hati, N. Sabbar, A. El Hajjaji, and H. Asselman, “A novel multiband patch antenna array for satellite applications,” in Procedia Engineering, 2017, pp. 496-502.
  13. W. H. Weedon and S. K. Cheung, “Ku-band low-profile and wideband satellite communication antenna (LPWSA),” in Proc. IEEE International Symposium on Phased Array Systems and Technology (PAST), 2016, pp. 1-7.
  14. K. L. Wong, Compact and Broadband Microstrip Antennas, John Wiley & Sons, 2004.
  15. L. S. Chuan, S. Ru-Tian, and Y. P. Hon, “Ka-band satellite communications design analysis and optimization,” in Defense Science and Technology Agency (DSATA) Horizons, 2015, pp. 70-78.
  16. R. Deng, S. Xu, and F. Yang, “Design of a Ku/Kaquadbandreflectarray antenna for satellite communications,” in Proc. IEEE International Symposium on Antennas and Propagation (APSURSI), 2016, pp. 1217-1218.
  17. C. A. Balanis, Antenna Theory: Analysis and Design, Wiley, 2005.
  18. U. Ozkaya and L. Seyfi, "Dimension optimization of microstrip patch antenna in X/Ku band via an artificial neural network," in Procedia-Social and Behavioral Sciences, 2015, pp. 2520-2526.
  19. M. Moniruzzaman, M. T. Islam, G. Muhammad, M. S. Singh, and M. Samsuzzaman, "Quad-band metamaterial absorber based on asymmetric circular split ring resonator for multiband microwave applications" in Results in Physics, 2020, pp. 1-16.
  20. S. Malisuwan, J. Sivaraks, N. Madan, and N. Suriyakrai, “Design of microstrip patch antenna for Ku-band satellite communication applications,” International Journal of Computer and Communication Engineering, vol. 3, no. 6, pp. 413-416, 2014.
  21. N. Fugo, R. Kaewon, and S. Sirivisoot, “A comparison of various patch sizes and feed point positions of graphene microstrip antenna for orthopedic implants,” presented at 2015 Biomedical Engineering International Conference, 2015.
  22. N. Sanil, P. A. Venkat, and M. R. Ahmed, “Design and performance analysis of multiband microstrip antennas for IoT applications via satellite communication,” in Proc. Second International Conference on Green Computing and Internet of Things (ICGCIoT), Bangalore, India, 2018, pp. 60-63.
  23. Y. Liu and Y. H. Mary, “One dual-polarization 10-40 GHz planar array antenna for satellite communication,” in Proc. IEEE International Symposium on Antennas and Propagation and USNC-URSI Radio Science Meeting, 2019, pp. 1213-1214.
  24. R. Shrestha, D. E. Anagnostou, S. J. Horst, and J. P. Hoffman, “Dual-frequency and dual-polarization antenna array for satellite deployment,” in Proc. IEEE Aerospace Conference, 2016, pp. 1-6.
  25. E. Mutluer, B. Döken, and M. Kartal, “A dual-band frequency selective surface design for satellite applications,” in Proc. 18th Mediterranean Microwave Symposium (MMS), 2018, pp. 43-46.
  26. K. M. Ho and G. M. Rebeiz, “Dual-band circularly polarized microstrip antenna for Ku/Ka-band satellite communication arrays,” in Proc. IEEE Antennas and Propagation Society International Symposium (APSURSI), 2014, pp. 1831-1832.
  27. S. Dixit and S. Mahadik, “Design of multislot dual-band patch antenna for satellite communications," International Journal of Scientific Engineering and Applied Science (IJSEAS), vol. 1, no. 5, pp. 329-331, 2015.
  28. C. Chen, S. Xie, X. Zhang, and Z. Ren, “A new space and terrestrial integrated network architecture aggregated SDN,” Journal of China Academy of Electronics and Information Technology, vol. 10, no. 5, pp. 450-454, 2015
  29. Development of Microstrip Antenna for Satellite Applications at Ku/K/Ka Band Mandeep Singh, Amar Pratap Singh and Farooq Al-Janabi,', Journal of Communication Vol.16, No.4, April 2021

Publication Details

Published in : Volume 10 | Issue 3 | May-June 2023
Date of Publication : 2023-06-30
License:  This work is licensed under a Creative Commons Attribution 4.0 International License.
Page(s) : 331-342
Manuscript Number : IJSRSET23102137
Publisher : Technoscience Academy

Print ISSN : 2395-1990, Online ISSN : 2394-4099

Cite This Article :

V. Nagaraja, Dr. B Anuradha, " Design of Microstrip Antenna for Satellite Applications at K-Band, International Journal of Scientific Research in Science, Engineering and Technology(IJSRSET), Print ISSN : 2395-1990, Online ISSN : 2394-4099, Volume 10, Issue 3, pp.331-342, May-June-2023. Available at doi : https://doi.org/10.32628/IJSRSET23102137      Journal URL : https://res.ijsrset.com/IJSRSET23102137

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