ctrlnum article-8060
fullrecord <?xml version="1.0"?> <dc schemaLocation="http://www.openarchives.org/OAI/2.0/oai_dc/ http://www.openarchives.org/OAI/2.0/oai_dc.xsd"><title lang="en-US">A Novel Design of a Miniature Metamaterial Antenna for RFID Reader Applications</title><creator>Ennajih, A.; Hassan 1st University</creator><creator>Zbitou, J.; Hassan 1st University</creator><creator>Latrach, M.; Microwave Group (ESEO)</creator><creator>Errkik, A.; Hassan 1st University</creator><creator>EL Abdellaoui, L.; Hassan 1st University</creator><creator>Tajmouati, A.; Hassan 1st University</creator><subject lang="en-US">radio frequency identification; metamaterial; RFID reader antenna; UHF antenna;</subject><description lang="en-US">In this article, we propose a novel design of a dual band antenna based metamaterial for RFID applications. The proposed antenna consists of a rectangular patch using inverted u-slot in radiating element and two split ring resonators loaded in the ground plane. The antenna is printed on an FR4 substrate having athickness of 1.6 mm, permitivitty of 4.4 and loss tanget of 0.025. this antenna is feed by a micostrip line having caracteristique of 50 Ohms. The designed antenna resonates at the UHF band around 900Mz with an input impedance of 87MHz and also, resonates at the ISM band around 2.45GHz with a large bandwidth about 516MHz. The designed antenna is simulated bys using CST and the results is validated by HFSS. After simulation, a prototype of the proposed antenna is fabricated, and the measured results show a good agreement with the simulated one.</description><publisher lang="en-US">Universitas Ahmad Dahlan</publisher><contributor lang="en-US"/><date>2018-02-01</date><type>Journal:Article</type><type>Other:info:eu-repo/semantics/publishedVersion</type><type>Other:</type><type>File:application/pdf</type><identifier>http://journal.uad.ac.id/index.php/TELKOMNIKA/article/view/8060</identifier><identifier>10.12928/telkomnika.v16i1.8060</identifier><source lang="en-US">TELKOMNIKA (Telecommunication Computing Electronics and Control); Vol 16, No 1: February 2018; 174-181</source><source>2302-9293</source><source>1693-6930</source><source>10.12928/telkomnika.v16i1</source><language>eng</language><relation>http://journal.uad.ac.id/index.php/TELKOMNIKA/article/view/8060/5281</relation><rights lang="0">Copyright (c) 2020 Universitas Ahmad Dahlan</rights><rights lang="0">http://creativecommons.org/licenses/by-sa/4.0</rights><recordID>article-8060</recordID></dc>
language eng
format Journal:Article
Journal
Other:info:eu-repo/semantics/publishedVersion
Other
Other:
File:application/pdf
File
Journal:eJournal
author Ennajih, A.; Hassan 1st University
Zbitou, J.; Hassan 1st University
Latrach, M.; Microwave Group (ESEO)
Errkik, A.; Hassan 1st University
EL Abdellaoui, L.; Hassan 1st University
Tajmouati, A.; Hassan 1st University
title A Novel Design of a Miniature Metamaterial Antenna for RFID Reader Applications
publisher Universitas Ahmad Dahlan
publishDate 2018
topic radio frequency identification
metamaterial
RFID reader antenna
UHF antenna
url http://journal.uad.ac.id/index.php/TELKOMNIKA/article/view/8060
http://journal.uad.ac.id/index.php/TELKOMNIKA/article/view/8060/5281
contents In this article, we propose a novel design of a dual band antenna based metamaterial for RFID applications. The proposed antenna consists of a rectangular patch using inverted u-slot in radiating element and two split ring resonators loaded in the ground plane. The antenna is printed on an FR4 substrate having athickness of 1.6 mm, permitivitty of 4.4 and loss tanget of 0.025. this antenna is feed by a micostrip line having caracteristique of 50 Ohms. The designed antenna resonates at the UHF band around 900Mz with an input impedance of 87MHz and also, resonates at the ISM band around 2.45GHz with a large bandwidth about 516MHz. The designed antenna is simulated bys using CST and the results is validated by HFSS. After simulation, a prototype of the proposed antenna is fabricated, and the measured results show a good agreement with the simulated one.
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