Radial Line Slot Array (Rlsa) Antenna Design At 28 Ghz Using Air Gap Cavity Structure

A radial line slot array antenna is presented and experimentally discussed for a fifth generation (5G) mobile communication system that resonates at the frequency of 28 GHz. Additionally, it is low profile, simple structure, easy to manufacture with high gain and radiation characteristics. The two m...

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Main Authors: Shairi, Noor Azwan, Azian Kamaruddin, Rabiatul Adawiyah, Mohd Ibrahim, Imran, Rahim, M.A.A., Zakaria, Zahriladha, Rahman, T.A.
Format: Article
Language:English
Published: Penerbit Universiti, UTeM 2017
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Online Access:http://eprints.utem.edu.my/id/eprint/20870/2/07-%20Paper%20-%20Radial%20Line%20Slot%20Array.pdf
http://eprints.utem.edu.my/id/eprint/20870/
http://journal.utem.edu.my/index.php/jtec/article/view/2643
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spelling my.utem.eprints.208702021-07-09T13:18:21Z http://eprints.utem.edu.my/id/eprint/20870/ Radial Line Slot Array (Rlsa) Antenna Design At 28 Ghz Using Air Gap Cavity Structure Shairi, Noor Azwan Azian Kamaruddin, Rabiatul Adawiyah Mohd Ibrahim, Imran Rahim, M.A.A. Zakaria, Zahriladha Rahman, T.A. T Technology (General) TK Electrical engineering. Electronics Nuclear engineering A radial line slot array antenna is presented and experimentally discussed for a fifth generation (5G) mobile communication system that resonates at the frequency of 28 GHz. Additionally, it is low profile, simple structure, easy to manufacture with high gain and radiation characteristics. The two models of the antenna were simulated with different cavity thickness, which are 2.5 mm and 3.2 mm. The antenna cavity consists of an FR4 hybrid with an air gap that has produced an equivalent dielectric substrate value of 1.13. The antenna has been fed by a modified dielectric coated of 50 Ω SSMA connector as a coaxial to waveguide transition. Details of the antenna model and simulation result are presented and discussed clearly in this paper. The Computer Simulation Technology Microwave Studio 2015 software has been used as a tool to assist the simulation work. The simulation result gave the return loss of -13.99 dB at 28 GHz for air gap cavity of 2.5 mm. The higher value gain of 21.70 dBi for 3.2 mm and less than -10 dB impedance with the bandwidth from 24.27 – 32 GHz is realized. The beamwidth obtained is below 15 o of E and H planes for 2.5 mm. Penerbit Universiti, UTeM 2017 Article PeerReviewed text en http://eprints.utem.edu.my/id/eprint/20870/2/07-%20Paper%20-%20Radial%20Line%20Slot%20Array.pdf Shairi, Noor Azwan and Azian Kamaruddin, Rabiatul Adawiyah and Mohd Ibrahim, Imran and Rahim, M.A.A. and Zakaria, Zahriladha and Rahman, T.A. (2017) Radial Line Slot Array (Rlsa) Antenna Design At 28 Ghz Using Air Gap Cavity Structure. Journal Of Telecommunication, Electronic And Computer Engineering (JTEC) , 9 (2-8). pp. 133-136. ISSN 2180-1843 http://journal.utem.edu.my/index.php/jtec/article/view/2643
institution Universiti Teknikal Malaysia Melaka
building UTEM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknikal Malaysia Melaka
content_source UTEM Institutional Repository
url_provider http://eprints.utem.edu.my/
language English
topic T Technology (General)
TK Electrical engineering. Electronics Nuclear engineering
spellingShingle T Technology (General)
TK Electrical engineering. Electronics Nuclear engineering
Shairi, Noor Azwan
Azian Kamaruddin, Rabiatul Adawiyah
Mohd Ibrahim, Imran
Rahim, M.A.A.
Zakaria, Zahriladha
Rahman, T.A.
Radial Line Slot Array (Rlsa) Antenna Design At 28 Ghz Using Air Gap Cavity Structure
description A radial line slot array antenna is presented and experimentally discussed for a fifth generation (5G) mobile communication system that resonates at the frequency of 28 GHz. Additionally, it is low profile, simple structure, easy to manufacture with high gain and radiation characteristics. The two models of the antenna were simulated with different cavity thickness, which are 2.5 mm and 3.2 mm. The antenna cavity consists of an FR4 hybrid with an air gap that has produced an equivalent dielectric substrate value of 1.13. The antenna has been fed by a modified dielectric coated of 50 Ω SSMA connector as a coaxial to waveguide transition. Details of the antenna model and simulation result are presented and discussed clearly in this paper. The Computer Simulation Technology Microwave Studio 2015 software has been used as a tool to assist the simulation work. The simulation result gave the return loss of -13.99 dB at 28 GHz for air gap cavity of 2.5 mm. The higher value gain of 21.70 dBi for 3.2 mm and less than -10 dB impedance with the bandwidth from 24.27 – 32 GHz is realized. The beamwidth obtained is below 15 o of E and H planes for 2.5 mm.
format Article
author Shairi, Noor Azwan
Azian Kamaruddin, Rabiatul Adawiyah
Mohd Ibrahim, Imran
Rahim, M.A.A.
Zakaria, Zahriladha
Rahman, T.A.
author_facet Shairi, Noor Azwan
Azian Kamaruddin, Rabiatul Adawiyah
Mohd Ibrahim, Imran
Rahim, M.A.A.
Zakaria, Zahriladha
Rahman, T.A.
author_sort Shairi, Noor Azwan
title Radial Line Slot Array (Rlsa) Antenna Design At 28 Ghz Using Air Gap Cavity Structure
title_short Radial Line Slot Array (Rlsa) Antenna Design At 28 Ghz Using Air Gap Cavity Structure
title_full Radial Line Slot Array (Rlsa) Antenna Design At 28 Ghz Using Air Gap Cavity Structure
title_fullStr Radial Line Slot Array (Rlsa) Antenna Design At 28 Ghz Using Air Gap Cavity Structure
title_full_unstemmed Radial Line Slot Array (Rlsa) Antenna Design At 28 Ghz Using Air Gap Cavity Structure
title_sort radial line slot array (rlsa) antenna design at 28 ghz using air gap cavity structure
publisher Penerbit Universiti, UTeM
publishDate 2017
url http://eprints.utem.edu.my/id/eprint/20870/2/07-%20Paper%20-%20Radial%20Line%20Slot%20Array.pdf
http://eprints.utem.edu.my/id/eprint/20870/
http://journal.utem.edu.my/index.php/jtec/article/view/2643
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score 13.160551