A triple-band antenna array for next-generation wireless and satellite-based applications

Author:

Razzaqi Asghar A.,Khawaja Bilal A.,Ramzan Mehrab,Zafar Muhammad Javed,Nasir Syeda Areeba,Mustaqim Muhammed,Tarar Munir A.,Tauqeer Tauseef

Abstract

In this paper, a triple-band 1 × 2 and 1 × 4 microstrip patch antenna array for next-generation wireless and satellite-based applications are presented. The targeted frequency bands are 3.6, 5.2 and 6.7 GHz, respectively. Simple design procedures and optimization techniques are discussed to achieve better antenna performance. The antenna is designed and simulated using Agilent ADS Momentum using FR4 substrate (εr= 4.2 and h = 1.66 mm). The main patch of the antenna is designed for 3.6 GHz operation. A hybrid feed technique is used for antenna arrays with quarter-wave transformer-based network to match the impedance from the feed-point to the antenna to 50 Ω. The antenna is optimized to resonate at triple-bands by using two symmetrical slits. The single-element triple-band antenna is fabricated and characterized, and a comparison between the simulated and measured antenna is presented. The achieved simulated impedance bandwidths/gains for the 1 × 2 array are 1.67%/7.75, 1.06%/7.7, and 1.65%/9.4 dBi and for 1 × 4 array are 1.67%/10.2, 1.45%/8.2, and 1.05%/10 dBi for 3.6, 5.2, and 6.7 GHz bands, respectively, which are very practical. These antenna arrays can also be used for advanced antenna beam-steering systems.

Publisher

Cambridge University Press (CUP)

Subject

Electrical and Electronic Engineering

Reference24 articles.

1. New multiband printed meander antenna for wireless applications

2. A Dual Band U-Slot Printed Antenna Array for Lte and Wimax Applications

3. Notis D.T. ; Liakou P.C. ; Chrissoulidis D.P. : Dual polarized microstrip patch antenna, reduced in size by use of peripheral slits, In Proc. 7th European Conf. on Wireless Technology (ECWT ’04), October 2004, 273–276.

4. Study of a slit cut on a microstrip antenna and its applications

5. Reconfigurable Antennas for Wireless and Space Applications

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