Design of a rectangular shape omega slotted microstrip patch antenna for WLAN/WiMaxwireless applications

In this article, an optimized rectangular shaped patch antenna loaded with inverse omega shape and horizontal slots, and feed by microstrip line is designed for WLAN/WiMAX applications. The expected resonant frequency mode and desired bandwidth are obtained through numerous simulation processes and...

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Main Authors: Ahsan, M.R., Islam, M.T., Ullah, M.H.
Format: Article
Published: Editura Academiei Romane 2016
Subjects:
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author Ahsan, M.R.
Islam, M.T.
Ullah, M.H.
author_facet Ahsan, M.R.
Islam, M.T.
Ullah, M.H.
author_sort Ahsan, M.R.
collection UM
description In this article, an optimized rectangular shaped patch antenna loaded with inverse omega shape and horizontal slots, and feed by microstrip line is designed for WLAN/WiMAX applications. The expected resonant frequency mode and desired bandwidth are obtained through numerous simulation processes and utilizing the built-in optimizing tool in high frequency structural simulator (HFSS). The optimized design of the antenna gives impedance bandwidths (reflection coefficient S11<-10 dB) of 440 MHz (2.32 to 2.76 GHz), 570 MHz (327 to 3.84 GHz) and 1190 MHz (4.9 to 6.09 GHz) with the main resonant frequency at 2.54, 3.63 and 5.24 GHz respectively. The proposed antenna also attained appreciable gain characteristics and almost symmetrical/stable radiation patterns which can cover 2.4/5.2/5.8 GHz WLAN bands and 3.5/5.5 GHz WiMAX bands.
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spelling um.eprints-181612017-11-08T03:50:26Z http://eprints.um.edu.my/18161/ Design of a rectangular shape omega slotted microstrip patch antenna for WLAN/WiMaxwireless applications Ahsan, M.R. Islam, M.T. Ullah, M.H. TK Electrical engineering. Electronics Nuclear engineering In this article, an optimized rectangular shaped patch antenna loaded with inverse omega shape and horizontal slots, and feed by microstrip line is designed for WLAN/WiMAX applications. The expected resonant frequency mode and desired bandwidth are obtained through numerous simulation processes and utilizing the built-in optimizing tool in high frequency structural simulator (HFSS). The optimized design of the antenna gives impedance bandwidths (reflection coefficient S11<-10 dB) of 440 MHz (2.32 to 2.76 GHz), 570 MHz (327 to 3.84 GHz) and 1190 MHz (4.9 to 6.09 GHz) with the main resonant frequency at 2.54, 3.63 and 5.24 GHz respectively. The proposed antenna also attained appreciable gain characteristics and almost symmetrical/stable radiation patterns which can cover 2.4/5.2/5.8 GHz WLAN bands and 3.5/5.5 GHz WiMAX bands. Editura Academiei Romane 2016 Article PeerReviewed Ahsan, M.R. and Islam, M.T. and Ullah, M.H. (2016) Design of a rectangular shape omega slotted microstrip patch antenna for WLAN/WiMaxwireless applications. Revue Roumaine des Sciences Techniques Serie Electrotechnique et Energetique, 61 (1). pp. 63-67. ISSN 0035-4066, http://revue.elth.pub.ro/viewpdf.php?id=555
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
Ahsan, M.R.
Islam, M.T.
Ullah, M.H.
Design of a rectangular shape omega slotted microstrip patch antenna for WLAN/WiMaxwireless applications
title Design of a rectangular shape omega slotted microstrip patch antenna for WLAN/WiMaxwireless applications
title_full Design of a rectangular shape omega slotted microstrip patch antenna for WLAN/WiMaxwireless applications
title_fullStr Design of a rectangular shape omega slotted microstrip patch antenna for WLAN/WiMaxwireless applications
title_full_unstemmed Design of a rectangular shape omega slotted microstrip patch antenna for WLAN/WiMaxwireless applications
title_short Design of a rectangular shape omega slotted microstrip patch antenna for WLAN/WiMaxwireless applications
title_sort design of a rectangular shape omega slotted microstrip patch antenna for wlan wimaxwireless applications
topic TK Electrical engineering. Electronics Nuclear engineering
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