Design Of Helical Antenna For Next Generation Wireless Communication

This study proposes a novel helical antenna design for next generation applications. The strip helical antenna is prescribed for next generation wireless communication and wideband applications that offer circular polarization and a wide bandwidth. In fact, the proposed helical antenna suits 5.8 GHz...

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Main Authors: Zeain, Mohammed Yousif, Zakaria, Zahriladha, Abu, Maisarah, Al Gburi, Ahmed Jamal Abdullah, Alsariera, Hussein Salameh Mahmoud, Hussein, Sameer Abdulateef, Hamad, Othman Saad Hamad, Toding, Apriana, Al-Tarifi, Monjed A., Lago, Herwansyah, Saeidi, Tale
Format: Article
Language:English
Published: Wydawnictwo SIGMA-NOT 2020
Online Access:http://eprints.utem.edu.my/id/eprint/25215/2/PREMUHAMMAD.PDF
http://eprints.utem.edu.my/id/eprint/25215/
http://pe.org.pl/articles/2020/11/19.pdf
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spelling my.utem.eprints.252152021-08-19T07:56:41Z http://eprints.utem.edu.my/id/eprint/25215/ Design Of Helical Antenna For Next Generation Wireless Communication Zeain, Mohammed Yousif Zakaria, Zahriladha Abu, Maisarah Al Gburi, Ahmed Jamal Abdullah Alsariera, Hussein Salameh Mahmoud Hussein, Sameer Abdulateef Hamad, Othman Saad Hamad Toding, Apriana Al-Tarifi, Monjed A. Lago, Herwansyah Saeidi, Tale This study proposes a novel helical antenna design for next generation applications. The strip helical antenna is prescribed for next generation wireless communication and wideband applications that offer circular polarization and a wide bandwidth. In fact, the proposed helical antenna suits 5.8 GHz frequency by using Teflon material. The newly-designed strip was printed on a substrate and rolled into a helix shape to achieve circular polarization without impedance matching. This antenna is meant for wideband wireless communication applications. A wide bandwidth of 2.7 GHz with 5.8 GHz resonant frequency was attained through the use of helical antenna on Teflon substrate. The proposed antenna on Teflon substrate recorded a gain of 8.97 dB and 92% efficiency. The antenna design parameters and the simulated results were retrieved using Computer Simulation Technology software (CST). The measurement result of return loss displayed mismatch at 5.22 GHz due to manual fabrication. This developed antenna may be applied for a number of wireless applications, including Wideband, Ultra-wideband, and 5G. Wydawnictwo SIGMA-NOT 2020 Article PeerReviewed text en http://eprints.utem.edu.my/id/eprint/25215/2/PREMUHAMMAD.PDF Zeain, Mohammed Yousif and Zakaria, Zahriladha and Abu, Maisarah and Al Gburi, Ahmed Jamal Abdullah and Alsariera, Hussein Salameh Mahmoud and Hussein, Sameer Abdulateef and Hamad, Othman Saad Hamad and Toding, Apriana and Al-Tarifi, Monjed A. and Lago, Herwansyah and Saeidi, Tale and UNSPECIFIED (2020) Design Of Helical Antenna For Next Generation Wireless Communication. Przeglad Elektrotechniczny, 96 (11). pp. 96-99. ISSN 0033-2097 http://pe.org.pl/articles/2020/11/19.pdf 10.15199/48.2020.11.19
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 This study proposes a novel helical antenna design for next generation applications. The strip helical antenna is prescribed for next generation wireless communication and wideband applications that offer circular polarization and a wide bandwidth. In fact, the proposed helical antenna suits 5.8 GHz frequency by using Teflon material. The newly-designed strip was printed on a substrate and rolled into a helix shape to achieve circular polarization without impedance matching. This antenna is meant for wideband wireless communication applications. A wide bandwidth of 2.7 GHz with 5.8 GHz resonant frequency was attained through the use of helical antenna on Teflon substrate. The proposed antenna on Teflon substrate recorded a gain of 8.97 dB and 92% efficiency. The antenna design parameters and the simulated results were retrieved using Computer Simulation Technology software (CST). The measurement result of return loss displayed mismatch at 5.22 GHz due to manual fabrication. This developed antenna may be applied for a number of wireless applications, including Wideband, Ultra-wideband, and 5G.
format Article
author Zeain, Mohammed Yousif
Zakaria, Zahriladha
Abu, Maisarah
Al Gburi, Ahmed Jamal Abdullah
Alsariera, Hussein Salameh Mahmoud
Hussein, Sameer Abdulateef
Hamad, Othman Saad Hamad
Toding, Apriana
Al-Tarifi, Monjed A.
Lago, Herwansyah
Saeidi, Tale
spellingShingle Zeain, Mohammed Yousif
Zakaria, Zahriladha
Abu, Maisarah
Al Gburi, Ahmed Jamal Abdullah
Alsariera, Hussein Salameh Mahmoud
Hussein, Sameer Abdulateef
Hamad, Othman Saad Hamad
Toding, Apriana
Al-Tarifi, Monjed A.
Lago, Herwansyah
Saeidi, Tale
Design Of Helical Antenna For Next Generation Wireless Communication
author_facet Zeain, Mohammed Yousif
Zakaria, Zahriladha
Abu, Maisarah
Al Gburi, Ahmed Jamal Abdullah
Alsariera, Hussein Salameh Mahmoud
Hussein, Sameer Abdulateef
Hamad, Othman Saad Hamad
Toding, Apriana
Al-Tarifi, Monjed A.
Lago, Herwansyah
Saeidi, Tale
author_sort Zeain, Mohammed Yousif
title Design Of Helical Antenna For Next Generation Wireless Communication
title_short Design Of Helical Antenna For Next Generation Wireless Communication
title_full Design Of Helical Antenna For Next Generation Wireless Communication
title_fullStr Design Of Helical Antenna For Next Generation Wireless Communication
title_full_unstemmed Design Of Helical Antenna For Next Generation Wireless Communication
title_sort design of helical antenna for next generation wireless communication
publisher Wydawnictwo SIGMA-NOT
publishDate 2020
url http://eprints.utem.edu.my/id/eprint/25215/2/PREMUHAMMAD.PDF
http://eprints.utem.edu.my/id/eprint/25215/
http://pe.org.pl/articles/2020/11/19.pdf
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score 13.211869