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Design and Optimization of Four Element Triangular Dielectric Resonator Antenna using PSO Algorithm for Wireless Applications

  • Received : 2023.10.05
  • Published : 2023.10.30

Abstract

This paper portrays the design and optimization of a wideband four element triangular dielectric resonator antenna (TDRA) using PSO. The proposed antenna's radiation characteristics were extracted using Ansoft HFSS software. At a resonant frequency of 5-7 GHz, the four element antenna provides nearly 21 percent bandwidth and the optimized gives 5.82 dBi peak gain. The radiation patterns symmetry and uniformity are maintained throughout the operating bandwidth. for WLAN (IEEE 802.16) and WiMAX applications, the proposed antenna exhibits a consistent symmetric monopole type radiation pattern with low cross polarisation. The proposed antenna's performance was compared to that of other dielectric resonator antenna (DRA) shapes, and it was discovered that the TDRA uses a lot less radiation area to provide better performance than other DRA shapes and PSO optimized antenna increases the gain of the antenna

Keywords

References

  1. S.Keyrouz and D.Caratelli ;Dielectric Resonator Antennas: Basic Concepts, Design Guidelines, and Recent Developments at Millimeter-Wave Frequencies. 
  2. Lo, H.Y.; Leung, K.W.; Luk, K.M.; Yung, E.K.N.: Low profile equilateral-triangular dielectric resonator antenna of very high permittivity. Electron. Lett., 35 (1999), 2164-2166.  https://doi.org/10.1049/el:19991459
  3. Mongia, R.K.; Ittipiboon, A.: Theoretical and experimental investigations on rectangular rdielectric resonator antennas. IEEE Trans. Antennas Propag., 45 (1997), 1348-1356.  https://doi.org/10.1109/8.623123
  4. Long, S.A.; Allister, M.W.M.; Shen, L.C.: The resonant cylindrical dielectric cavity antenna. IEEE Trans. Antenna Propag., 31 (1983), 406-412.  https://doi.org/10.1109/TAP.1983.1143080
  5. B. Li, et.al.; In this letter, a rectangular dielectric resonator antenna (DRA) structure fed by two vertical strips with quadrature in phase is studied 
  6. Mohsen Khalily, et.al.; A novel dielectric resonator antenna (DRA) is presented for wideband circular polarization (CP). Two unequal inclined slits are loaded on the diagonal of the square DR to excite a CP mode.
  7. Gtupa, R. D., & Parihar, M. S.; The Rectangular DRA with Short Horn used to be designed for80*60. for80*60. 
  8. Das.G, Sharma, & Gangwar.; The hybrid ring dielectric resonator antenna designed for 50*30 mm. which is used two fr=4 dielectric permittivity of the two material is "4.4".in the rectangular dra structure is furnish for the circular polarization 
  9. Kumar Sahu, N., Sharma, et.al.; The annular ring patch fed cylindrical dielectric resonator antenna for 50*50 mm. which is used aluminum dielectric permittivity of the material is "9.8".in the cylindrical dra shape is provide for the circular polarization 
  10. https://www.researchgate.net/publication/277906216_Four_element_triangular_dielectric_resonator_antenna_for_wireless_application 
  11. Sun, R.-Y. (2015). Circularly Polarized Dielectric Resonator Antenna. ETRI Journal, 37(1), 26-31. doi:10.4218/etrij.15.0114.0637 
  12. K.P. Esselle, "Circularly Polarised Higher-Order Rectangular Dielectric Resonator Antenna," Electron. Lett., volume. 32, number. 3, Feb. 1996, pp. 150-151.  https://doi.org/10.1049/el:19960171
  13. A.A. Kishk, "Performance of Planar Four-Element Array of SingleFed Circularly Polarized Dielectric Resonator Antenna," Microwave. Opt. Technology. Lett.,volume. 38,no. 5, Sept. 2003, pp. 381-384.  https://doi.org/10.1002/mop.11066
  14. B. Li, C.-X. Hao ,and X.-Q. Sheng, "A Dual-Mode Quadrature- Fed Wideband Circularly Polarized Dielectric Resonator Antenna," IEEE Antennas Wireless Propagation.Lett.,volume. 8, Aug.2009, pp. 1036-1038.  https://doi.org/10.1109/LAWP.2009.2030700
  15. M. Khalily, M.R. Kamarudin, and M.H. Jamaluddin,"A Novel Square Dielectric Resonator Antenna with Two Unequal Inclined Slits for Wideband Circular Polarization," IEEE Antennas Wireless Propagation. Lett.,volume. 12, Sept. 2013, pp. 1256 to 1259. 
  16. . Robinson and Y. Rahmat-Samii, "Particle swarm optimization in electromagnetics," IEEE Transactions on Antennas and Propagation, vol. 52, no. 2, 397 pages, 2004. 
  17. Y. Rahmat-Samii, D. Gies, and J. Robinson, "Particle swarm optimization (PSO): a novel paradigm for antenna designs," The Radio Science Bulletin, vol. 305, 14 pages, 2003. 
  18. K. E. Parsopoulos and M. N. Vrahatis, "Recent approaches to global optimization problems through particle swarm optimization," Natural Computing, vol. 1, no. 2-3, 235 pages, 2002.