Array Antenna for Wireless Applications

Authors

  • Dr. Vaishali M. Dhede  Assistant Professor, Electronics and Telecommunication Engineering, Jaihind College of Engineering, Kuran, Pune, India
  • Vaishali V. Thorat  Assistant Professor, Electronics and Telecommunication Engineering, D.Y. Patil School of Engineering, Ambi, India

Keywords:

Array, wireless, gain.

Abstract

This paper presents Array Antenna at 2.45GHz for wireless Applications. Here substrate integrated waveguide technique is used which is useful planer circuitry. A new design of array antenna was used to improve performance of antenna. The proposed array antenna has been design on FR4 substrate. It has overall size is 110 mm × 73 mm × 1.6 mm3. The proposed 2x1 antenna system with SIW operates at 2.5 GHz with a bandwidth of 60 MHz. The gain of a 2x1 patch antenna array is 6.7 dBi without SIW and 8.5 dBi with SIW. The proposed array Antenna has VSWR less than 1.4. The simulated outcome demonstrates how the enhanced antenna gain of the novel design technique for the 2x1 patch array. In comparison to the 2x1 array antenna design without substrate integrated waveguide, this result demonstrated a considerable improvement in Gain of 1.8 dBi. This proposed 2x1 patch array antenna is suitable for wireless applications.

References

  1. Ekke, Vaishali & Zade, Prasanna, “Gain enhancement of Microstrip patch Antenna Array by using substrate integrated waveguide for wireless communication system”, International Conference on Automatic Control and Dynamic Optimization Techniques (ICACDOT), 2016.
  2. F. Xu and K. Wu, “Guided-wave and leakage characteristics substrate integrated waveguide,” IEEE Trans. Microwave. Theory Tech., vol.53, No. 1, pp. 66–73, 2005.
  3. M. Bozzi, A. Georgiadis and K. Wu. “Review of substrate-integrated waveguide circuits and antennas,” IET Microwaves, Antennas &Propagation, pp. 909-920, 2010.
  4. Zhang, X.-C., Z.-Y. Yu, and J. Xu, “Novel band-pass substrate integrated waveguide (SIW) filter based on complementary split ring resonators (CSRRS),” Progress In Electromagnetics Research, PIER 72, 39–46, 2007.
  5. LI Yan, W E I Hong, WU Ke. “Simulation and experiment on substrate integrated mono pulse antenna” Washington DC: Antennas and Propagation Society International Symposium, 2005.
  6. LI YAN ,W E I Hong, WU Ke, et al. “Investigations on the propagation characteristics of the substrate intergrated waveguide based on the method of lines” .IEE Proc Microw Antennas Prop, 152 (1) :35~42 2005.
  7. DESLANDESD, WU Ke. “A complete substrate integration of waveguide diplexer and antenna for low cost millimeter wave module”, Int Sympon Signals, System s, and Electronics (ISSSE’04 ),2004.
  8. Mohammed Farouk Nakmouche, Hany Taher, Diaa E. Fawzy and A.M.M.A. Allam,” Development of a Wideband Substrate Integrated Waveguide Bandpass Filter Using H-Slotted DGS,” The 6th IEEE Conference on Antenna Measurements & Applications (CAMA), October 2019.
  9. E Sandi, A Diamah, M W Iqbal and D N Fajriah. ” Design of substrate integrated waveguide to improve antenna performances for 5G mobile communication application”, E Sandi et al 2020 J. Phys.: Conf. Ser. 1402 044032.
  10. Elkwash, Zeyad & Derbal, Abdullatif & Elmabrok, Mohammed, “Microstrip Patch Antenna Array Design for WLAN and WIMAX Applications”, Conference of Industrial Technology, 2020.

Downloads

Published

2019-04-30

Issue

Section

Research Articles

How to Cite

[1]
Dr. Vaishali M. Dhede, Vaishali V. Thorat, " Array Antenna for Wireless Applications , IInternational Journal of Scientific Research in Computer Science, Engineering and Information Technology(IJSRCSEIT), ISSN : 2456-3307, Volume 5, Issue 2, pp.1384-1388, March-April-2019.