Asymmetric patch element reflectarray with dual linear and dual circular polarization

A reflectarray antenna consisting of asymmetrical patch elements is proposed, which is capable of producing dual linear and dual circular polarized operation at 26 GHz frequency. The main purpose of this design is to support four different polarizations using the same patch element. The proposed ref...

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Main Authors: Shamsan, Zaid Ahmed, Dahri, Muhammad Hashim, Jamaluddin, Mohd Haizal, Abbasi, Muhammad Inam, Kamarudin‬, ‪Muhammad Ramlee, Che Seman, ‪Fauziahanim, Ashyap, Adel Yahya Isa, AlMuhanna, Khalid, Alorifi, Fawzi
Format: Article
Language:English
Published: Tech Science Press 2022
Online Access:http://eprints.utem.edu.my/id/eprint/26584/2/TSP_CMC_31532%20PUBLISHED.PDF
http://eprints.utem.edu.my/id/eprint/26584/
https://file.techscience.com/ueditor/files/cmc/TSP_CMC-73-3/TSP_CMC_31532/TSP_CMC_31532.pdf
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spelling my.utem.eprints.265842023-06-13T16:06:38Z http://eprints.utem.edu.my/id/eprint/26584/ Asymmetric patch element reflectarray with dual linear and dual circular polarization Shamsan, Zaid Ahmed Dahri, Muhammad Hashim Jamaluddin, Mohd Haizal Abbasi, Muhammad Inam Kamarudin‬, ‪Muhammad Ramlee Che Seman, ‪Fauziahanim Ashyap, Adel Yahya Isa AlMuhanna, Khalid Alorifi, Fawzi A reflectarray antenna consisting of asymmetrical patch elements is proposed, which is capable of producing dual linear and dual circular polarized operation at 26 GHz frequency. The main purpose of this design is to support four different polarizations using the same patch element. The proposed reflectarray has a single layer configuration with a linearly polarized feed and circular ring slots in the ground plane. Asymmetric patch element is designed from a square patch element by tilting its one vertical side to some optimized inclination. A wide reflection phase range of 600° is obtained with the asymmetric patch element during unit cell measurements. A 332 element circular aperture reflectarray is designed with the proposed configuration and experimentally validated with a linearly polarized prime feed configuration. Two different orientations of mirror and non-mirror asymmetric patch elements on the surface of reflectarray are analyzed. Dual linear polarization is obtained with the mirror orientation of the asymmetric patch elements on the surface of reflectarray. Alternatively, asymmetric patch elements without mirror orientation are demonstrated to produce dual circular polarization with the same linearly polarized feed. A maximum measured gain of 24.4 dB and 26.1 dB is achieved for dual linear and dual circular polarization, respectively. Their respective measured efficiencies are 28% and 41.3%, which are supported by a maximum −3 dB gain bandwidth of 13.8% and 11.5%. The circular polarization operation of the reflectarray is also supported by a 6 dB axial ratio bandwidth of 9.2%. The proposed asymmetric patch reflectarray antenna with polarization diversity, wide bandwidth and high gain is suitable to be used in many high frequency applications of 5G communication. Tech Science Press 2022-07-28 Article PeerReviewed text en http://eprints.utem.edu.my/id/eprint/26584/2/TSP_CMC_31532%20PUBLISHED.PDF Shamsan, Zaid Ahmed and Dahri, Muhammad Hashim and Jamaluddin, Mohd Haizal and Abbasi, Muhammad Inam and Kamarudin‬, ‪Muhammad Ramlee and Che Seman, ‪Fauziahanim and Ashyap, Adel Yahya Isa and AlMuhanna, Khalid and Alorifi, Fawzi (2022) Asymmetric patch element reflectarray with dual linear and dual circular polarization. Computers, Materials & Continua, 73 (3). pp. 6085-6101. ISSN 1546-2218 https://file.techscience.com/ueditor/files/cmc/TSP_CMC-73-3/TSP_CMC_31532/TSP_CMC_31532.pdf 10.32604/cmc.2022.031532
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
description A reflectarray antenna consisting of asymmetrical patch elements is proposed, which is capable of producing dual linear and dual circular polarized operation at 26 GHz frequency. The main purpose of this design is to support four different polarizations using the same patch element. The proposed reflectarray has a single layer configuration with a linearly polarized feed and circular ring slots in the ground plane. Asymmetric patch element is designed from a square patch element by tilting its one vertical side to some optimized inclination. A wide reflection phase range of 600° is obtained with the asymmetric patch element during unit cell measurements. A 332 element circular aperture reflectarray is designed with the proposed configuration and experimentally validated with a linearly polarized prime feed configuration. Two different orientations of mirror and non-mirror asymmetric patch elements on the surface of reflectarray are analyzed. Dual linear polarization is obtained with the mirror orientation of the asymmetric patch elements on the surface of reflectarray. Alternatively, asymmetric patch elements without mirror orientation are demonstrated to produce dual circular polarization with the same linearly polarized feed. A maximum measured gain of 24.4 dB and 26.1 dB is achieved for dual linear and dual circular polarization, respectively. Their respective measured efficiencies are 28% and 41.3%, which are supported by a maximum −3 dB gain bandwidth of 13.8% and 11.5%. The circular polarization operation of the reflectarray is also supported by a 6 dB axial ratio bandwidth of 9.2%. The proposed asymmetric patch reflectarray antenna with polarization diversity, wide bandwidth and high gain is suitable to be used in many high frequency applications of 5G communication.
format Article
author Shamsan, Zaid Ahmed
Dahri, Muhammad Hashim
Jamaluddin, Mohd Haizal
Abbasi, Muhammad Inam
Kamarudin‬, ‪Muhammad Ramlee
Che Seman, ‪Fauziahanim
Ashyap, Adel Yahya Isa
AlMuhanna, Khalid
Alorifi, Fawzi
spellingShingle Shamsan, Zaid Ahmed
Dahri, Muhammad Hashim
Jamaluddin, Mohd Haizal
Abbasi, Muhammad Inam
Kamarudin‬, ‪Muhammad Ramlee
Che Seman, ‪Fauziahanim
Ashyap, Adel Yahya Isa
AlMuhanna, Khalid
Alorifi, Fawzi
Asymmetric patch element reflectarray with dual linear and dual circular polarization
author_facet Shamsan, Zaid Ahmed
Dahri, Muhammad Hashim
Jamaluddin, Mohd Haizal
Abbasi, Muhammad Inam
Kamarudin‬, ‪Muhammad Ramlee
Che Seman, ‪Fauziahanim
Ashyap, Adel Yahya Isa
AlMuhanna, Khalid
Alorifi, Fawzi
author_sort Shamsan, Zaid Ahmed
title Asymmetric patch element reflectarray with dual linear and dual circular polarization
title_short Asymmetric patch element reflectarray with dual linear and dual circular polarization
title_full Asymmetric patch element reflectarray with dual linear and dual circular polarization
title_fullStr Asymmetric patch element reflectarray with dual linear and dual circular polarization
title_full_unstemmed Asymmetric patch element reflectarray with dual linear and dual circular polarization
title_sort asymmetric patch element reflectarray with dual linear and dual circular polarization
publisher Tech Science Press
publishDate 2022
url http://eprints.utem.edu.my/id/eprint/26584/2/TSP_CMC_31532%20PUBLISHED.PDF
http://eprints.utem.edu.my/id/eprint/26584/
https://file.techscience.com/ueditor/files/cmc/TSP_CMC-73-3/TSP_CMC_31532/TSP_CMC_31532.pdf
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score 13.2014675