Normal Mode Helical Antenna for Mobile Radio Communication

This research delves into the issue of large antennas impeding the downsizing of handheld ground sensor terminals that operate within the UHF mobile communication band. The paper introduces Normal Mode Helical Antennas (NMHAs) as a more compact option compared to traditional antennas. While previous...

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Published in:IEEE Symposium on Wireless Technology and Applications, ISWTA
Main Author: Hamsha N.N.A.B.; Azami M.H.B.; Rahman N.H.A.; Zainudin N.; Yamada Y.; Aris M.A.
Format: Conference paper
Language:English
Published: IEEE Computer Society 2024
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85203807207&doi=10.1109%2fISWTA62130.2024.10651723&partnerID=40&md5=1f3734e89044d7412e56a6ad26554192
id 2-s2.0-85203807207
spelling 2-s2.0-85203807207
Hamsha N.N.A.B.; Azami M.H.B.; Rahman N.H.A.; Zainudin N.; Yamada Y.; Aris M.A.
Normal Mode Helical Antenna for Mobile Radio Communication
2024
IEEE Symposium on Wireless Technology and Applications, ISWTA


10.1109/ISWTA62130.2024.10651723
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85203807207&doi=10.1109%2fISWTA62130.2024.10651723&partnerID=40&md5=1f3734e89044d7412e56a6ad26554192
This research delves into the issue of large antennas impeding the downsizing of handheld ground sensor terminals that operate within the UHF mobile communication band. The paper introduces Normal Mode Helical Antennas (NMHAs) as a more compact option compared to traditional antennas. While previous studies have mainly focused on miniaturizing and examining the radiation characteristics of NMHAs, there is limited research on how they perform in UHF mobile communication for handheld devices. To bridge this gap, the paper presents a design and optimization approach using FEKO software. This approach includes important factors like designing a self-resonant structure, achieving input impedance matching through a tap feed method, and fabrication. Emphasizing the significance of a balun for precise input impedance measurement using a Vector Network Analyzer (VNA) is crucial due to the potential for leakage currents in NMHAs. A successfully fabricated NMHA prototype operating at 395.25 MHz, showcasing effective signal transmission and reception, has been validated for the conceptual ground terminal to satellite propagation. This study is a step forward in the advancement of miniaturized antennas for UHF communication in handheld devices, facilitating more streamlined and feasible field deployments. © 2024 IEEE.
IEEE Computer Society
23247843
English
Conference paper

author Hamsha N.N.A.B.; Azami M.H.B.; Rahman N.H.A.; Zainudin N.; Yamada Y.; Aris M.A.
spellingShingle Hamsha N.N.A.B.; Azami M.H.B.; Rahman N.H.A.; Zainudin N.; Yamada Y.; Aris M.A.
Normal Mode Helical Antenna for Mobile Radio Communication
author_facet Hamsha N.N.A.B.; Azami M.H.B.; Rahman N.H.A.; Zainudin N.; Yamada Y.; Aris M.A.
author_sort Hamsha N.N.A.B.; Azami M.H.B.; Rahman N.H.A.; Zainudin N.; Yamada Y.; Aris M.A.
title Normal Mode Helical Antenna for Mobile Radio Communication
title_short Normal Mode Helical Antenna for Mobile Radio Communication
title_full Normal Mode Helical Antenna for Mobile Radio Communication
title_fullStr Normal Mode Helical Antenna for Mobile Radio Communication
title_full_unstemmed Normal Mode Helical Antenna for Mobile Radio Communication
title_sort Normal Mode Helical Antenna for Mobile Radio Communication
publishDate 2024
container_title IEEE Symposium on Wireless Technology and Applications, ISWTA
container_volume
container_issue
doi_str_mv 10.1109/ISWTA62130.2024.10651723
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85203807207&doi=10.1109%2fISWTA62130.2024.10651723&partnerID=40&md5=1f3734e89044d7412e56a6ad26554192
description This research delves into the issue of large antennas impeding the downsizing of handheld ground sensor terminals that operate within the UHF mobile communication band. The paper introduces Normal Mode Helical Antennas (NMHAs) as a more compact option compared to traditional antennas. While previous studies have mainly focused on miniaturizing and examining the radiation characteristics of NMHAs, there is limited research on how they perform in UHF mobile communication for handheld devices. To bridge this gap, the paper presents a design and optimization approach using FEKO software. This approach includes important factors like designing a self-resonant structure, achieving input impedance matching through a tap feed method, and fabrication. Emphasizing the significance of a balun for precise input impedance measurement using a Vector Network Analyzer (VNA) is crucial due to the potential for leakage currents in NMHAs. A successfully fabricated NMHA prototype operating at 395.25 MHz, showcasing effective signal transmission and reception, has been validated for the conceptual ground terminal to satellite propagation. This study is a step forward in the advancement of miniaturized antennas for UHF communication in handheld devices, facilitating more streamlined and feasible field deployments. © 2024 IEEE.
publisher IEEE Computer Society
issn 23247843
language English
format Conference paper
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record_format scopus
collection Scopus
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