A Reconfigurable WiMAX Antenna for Directional and Broadside Application

Author:

Jusoh M.1ORCID,Jamlos M. F.1,Kamarudin M. R.2,Sabapathy T.1

Affiliation:

1. Advanced Communication Engineering Centre (ACE), School of Computer and Communication Engineering, Universiti Malaysia Perlis (UniMAP), Kampus Pauh Putra, Arau, 02600 Perlis, Malaysia

2. Wireless Communication Centre (WCC), Faculty of Electrical Engineering, Universiti Teknologi Malaysia (UTM), Skudai, 81310 Johor, Malaysia

Abstract

A novel reconfigurable compact patch array antenna for directional and broadside application is proposed. The presented antenna has successfully been able to function for directional beam at 320° or 35° and divisive broadside beam at 43° and 330°. This is realized in the unique form of aperture coupled spiral feeding technique and positioning of the radiating elements at 0°, 90,° and 180°. The switchable feature is effectively performed by the configuration of three PIN diodes. All PIN diodes are positioned at the specific location of the aperture coupled structure. It is discovered in simulation that the switches can be represented with a copper strip line or touchstone (TS) block . The proposed antenna design operates at 2.37 GHz to 2.41 GHz and has a maximum gain of 6.4 dB and efficiency of 85.97%. Such antenna produces a broadside HPBW with a wider bandwidth covering from −90° to 90° compared to the normal microstrip antenna which could only provide HPBW of −50° to 50°. Moreover, the proposed antenna has small physical dimension of 100 mm by 100 mm. The simulation and measurement results have successfully exhibited the idea of the presented antenna performance. Therefore, the antenna is sufficiently competent in the smart WiMAX antenna application.

Publisher

Hindawi Limited

Subject

Electrical and Electronic Engineering

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Beam Steering Microstrip Antenna Using an Agile Spherical Cap Metamaterial Lens;Journal of Electronic Materials;2021-05-03

2. Markovian Arrival-Based Sleep Mode in WiMAX 2;Resource Management and Performance Analysis of Wireless Communication Networks;2021

3. Investigations of the Sheath Effect on the Resultant Magnetic Field of a Cylindrical Monopole Plasma Antenna;Plasma Science and Technology;2015-02

4. Performance Analysis of the Sleep Mode in WiMAX 2 Networks with Multimedia Application;Journal of Applied Mathematics;2014

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