Omega-shaped tag antenna with inductively-coupled feeding using U-shaped stepped-impedance resonators for RFID applications

This study proposes a new omega-shaped tag antenna with inductively-coupled feeding (ICF) using U-shaped stepped- impedance resonators (SIRs). It aims at improving the performance of the tag antennas for Radio Frequency Identification (RFID) applications. The radiating body of the antenna is fed usi...

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Main Authors: Alhawari, Adam R. H., Almawgani, A. H. M., Alghamdi, Hisham, Hindi, Ayman T., Saeedi, Tale, Ismail, Alyani
Format: Article
Language:English
Published: The Applied Computational Electromagnetics Society 2020
Online Access:http://psasir.upm.edu.my/id/eprint/86966/1/Omega-shaped%20tag%20antenna.pdf
http://psasir.upm.edu.my/id/eprint/86966/
https://journals.riverpublishers.com/index.php/ACES/article/view/7779
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spelling my.upm.eprints.869662022-01-10T04:50:08Z http://psasir.upm.edu.my/id/eprint/86966/ Omega-shaped tag antenna with inductively-coupled feeding using U-shaped stepped-impedance resonators for RFID applications Alhawari, Adam R. H. Almawgani, A. H. M. Alghamdi, Hisham Hindi, Ayman T. Saeedi, Tale Ismail, Alyani This study proposes a new omega-shaped tag antenna with inductively-coupled feeding (ICF) using U-shaped stepped- impedance resonators (SIRs). It aims at improving the performance of the tag antennas for Radio Frequency Identification (RFID) applications. The radiating body of the antenna is fed using two mirroring symmetrical U-shaped SIRs. This antenna is a simpler alternative for the existing antennas that match the impedance of the antenna to the chip impedance effectively applying varied reinforcement of the equivalent inductance of the radiating structure. In addition to the use of an omega-shaped structure, the proposed feeding technique boosts performance of the antenna impedance, dimensions, and peak gain. The measured size of the antenna was 50×55.55×1.6 mm3. It attains a peak gain of 1.8 dBi and radiation efficiency higher than 85% at its operating frequency. The experimental results revealed that this tag antenna has the characteristic of good impedance matching within the frequency range of 900-940 MHz, corresponding to a better power reflection coefficient of -3 dB. Comparison between the measured and simulated results verified that the proposed feeding method is capable to improve overall performance of RFID tag antennas. The Applied Computational Electromagnetics Society 2020-08 Article PeerReviewed text en http://psasir.upm.edu.my/id/eprint/86966/1/Omega-shaped%20tag%20antenna.pdf Alhawari, Adam R. H. and Almawgani, A. H. M. and Alghamdi, Hisham and Hindi, Ayman T. and Saeedi, Tale and Ismail, Alyani (2020) Omega-shaped tag antenna with inductively-coupled feeding using U-shaped stepped-impedance resonators for RFID applications. Applied Computational Electromagnetics Society Journal, 35 (8). 951 - 961. ISSN 1054-4887; ESSN: 1943-5711 https://journals.riverpublishers.com/index.php/ACES/article/view/7779 10.47037/2020.ACES.J.350815
institution Universiti Putra Malaysia
building UPM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Putra Malaysia
content_source UPM Institutional Repository
url_provider http://psasir.upm.edu.my/
language English
description This study proposes a new omega-shaped tag antenna with inductively-coupled feeding (ICF) using U-shaped stepped- impedance resonators (SIRs). It aims at improving the performance of the tag antennas for Radio Frequency Identification (RFID) applications. The radiating body of the antenna is fed using two mirroring symmetrical U-shaped SIRs. This antenna is a simpler alternative for the existing antennas that match the impedance of the antenna to the chip impedance effectively applying varied reinforcement of the equivalent inductance of the radiating structure. In addition to the use of an omega-shaped structure, the proposed feeding technique boosts performance of the antenna impedance, dimensions, and peak gain. The measured size of the antenna was 50×55.55×1.6 mm3. It attains a peak gain of 1.8 dBi and radiation efficiency higher than 85% at its operating frequency. The experimental results revealed that this tag antenna has the characteristic of good impedance matching within the frequency range of 900-940 MHz, corresponding to a better power reflection coefficient of -3 dB. Comparison between the measured and simulated results verified that the proposed feeding method is capable to improve overall performance of RFID tag antennas.
format Article
author Alhawari, Adam R. H.
Almawgani, A. H. M.
Alghamdi, Hisham
Hindi, Ayman T.
Saeedi, Tale
Ismail, Alyani
spellingShingle Alhawari, Adam R. H.
Almawgani, A. H. M.
Alghamdi, Hisham
Hindi, Ayman T.
Saeedi, Tale
Ismail, Alyani
Omega-shaped tag antenna with inductively-coupled feeding using U-shaped stepped-impedance resonators for RFID applications
author_facet Alhawari, Adam R. H.
Almawgani, A. H. M.
Alghamdi, Hisham
Hindi, Ayman T.
Saeedi, Tale
Ismail, Alyani
author_sort Alhawari, Adam R. H.
title Omega-shaped tag antenna with inductively-coupled feeding using U-shaped stepped-impedance resonators for RFID applications
title_short Omega-shaped tag antenna with inductively-coupled feeding using U-shaped stepped-impedance resonators for RFID applications
title_full Omega-shaped tag antenna with inductively-coupled feeding using U-shaped stepped-impedance resonators for RFID applications
title_fullStr Omega-shaped tag antenna with inductively-coupled feeding using U-shaped stepped-impedance resonators for RFID applications
title_full_unstemmed Omega-shaped tag antenna with inductively-coupled feeding using U-shaped stepped-impedance resonators for RFID applications
title_sort omega-shaped tag antenna with inductively-coupled feeding using u-shaped stepped-impedance resonators for rfid applications
publisher The Applied Computational Electromagnetics Society
publishDate 2020
url http://psasir.upm.edu.my/id/eprint/86966/1/Omega-shaped%20tag%20antenna.pdf
http://psasir.upm.edu.my/id/eprint/86966/
https://journals.riverpublishers.com/index.php/ACES/article/view/7779
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score 13.18916