Triple band antenna design for body centric wireless communications

In the recent years the need of using a single antenna that operates with in different frequency bands is much needed, where it led to the existence of the multi hand antennas. In this project the performance of a triple-frequency monopole antenna for wireless application is presented. The propose...

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Main Author: Mohammed, Elaf Zein Elabden
Format: Thesis
Published: 2010
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spelling my-utm-ep.270322017-08-14T14:05:58Z Triple band antenna design for body centric wireless communications 2010 Mohammed, Elaf Zein Elabden TK Electrical engineering. Electronics Nuclear engineering In the recent years the need of using a single antenna that operates with in different frequency bands is much needed, where it led to the existence of the multi hand antennas. In this project the performance of a triple-frequency monopole antenna for wireless application is presented. The proposed antenna comprises of a microstrip-fed monopole with an additional strips and a partial ground plane with four strips on the opposite side of the substrate. By adding these strips to this monopole, good resonant frequencies for the multi-band application are obtained at 2/2.4/5.8GHz. At a return loss of -lOdB the resonant frequencies 2GHz, 2.4GHz, and 5.8 GHz have covered the band widths of 0.24, 0.46, and 0.08 GHz respectively. A prototype of the proposed antenna had been constructed and experimentally studied. The simulated and measured results where compared to ensure that the proto type antenna will perform effectively when used. The proposed triple-frequency operation covers the range from 1GHz to 6GHz, with good antenna performance characteristic having a return loss less than -lOdB leading to an efficiency of more than 90%. 2010 Thesis http://eprints.utm.my/id/eprint/27032/ masters Universiti Teknologi Malaysia, Faculty of Electrical Engineering Faculty of Electrical Engineering
institution Universiti Teknologi Malaysia
collection UTM Institutional Repository
topic TK Electrical engineering
Electronics Nuclear engineering
spellingShingle TK Electrical engineering
Electronics Nuclear engineering
Mohammed, Elaf Zein Elabden
Triple band antenna design for body centric wireless communications
description In the recent years the need of using a single antenna that operates with in different frequency bands is much needed, where it led to the existence of the multi hand antennas. In this project the performance of a triple-frequency monopole antenna for wireless application is presented. The proposed antenna comprises of a microstrip-fed monopole with an additional strips and a partial ground plane with four strips on the opposite side of the substrate. By adding these strips to this monopole, good resonant frequencies for the multi-band application are obtained at 2/2.4/5.8GHz. At a return loss of -lOdB the resonant frequencies 2GHz, 2.4GHz, and 5.8 GHz have covered the band widths of 0.24, 0.46, and 0.08 GHz respectively. A prototype of the proposed antenna had been constructed and experimentally studied. The simulated and measured results where compared to ensure that the proto type antenna will perform effectively when used. The proposed triple-frequency operation covers the range from 1GHz to 6GHz, with good antenna performance characteristic having a return loss less than -lOdB leading to an efficiency of more than 90%.
format Thesis
qualification_level Master's degree
author Mohammed, Elaf Zein Elabden
author_facet Mohammed, Elaf Zein Elabden
author_sort Mohammed, Elaf Zein Elabden
title Triple band antenna design for body centric wireless communications
title_short Triple band antenna design for body centric wireless communications
title_full Triple band antenna design for body centric wireless communications
title_fullStr Triple band antenna design for body centric wireless communications
title_full_unstemmed Triple band antenna design for body centric wireless communications
title_sort triple band antenna design for body centric wireless communications
granting_institution Universiti Teknologi Malaysia, Faculty of Electrical Engineering
granting_department Faculty of Electrical Engineering
publishDate 2010
_version_ 1747815570910216192