UHF RFID split-ring resonator tag antenna inductively coupled feed for metallic object

In this paper, a split-ring resonator and an inductively coupled feed technique are designed to improve the RFID tag antennas performance. The presented tag antenna consists of two symmetrical C-shaped resonators with strip line in order to feed the radiating split-ring resonator structures by imple...

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Main Authors: Erman, Fuad Naim Ahmed, Ismail, Alyani, Raja Abdullah, Raja Syamsul Azmir, Alhawari, Adam Reda Hasan, Shabaneh, Arafat Abdallah Abdelwadod
Format: Conference or Workshop Item
Language:English
Published: IEEE 2015
Online Access:http://psasir.upm.edu.my/id/eprint/56255/1/UHF%20RFID%20split-ring%20resonator%20tag%20antenna%20inductively%20coupled%20feed%20for%20metallic%20object.pdf
http://psasir.upm.edu.my/id/eprint/56255/
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spelling my.upm.eprints.562552017-07-31T04:13:04Z http://psasir.upm.edu.my/id/eprint/56255/ UHF RFID split-ring resonator tag antenna inductively coupled feed for metallic object Erman, Fuad Naim Ahmed Ismail, Alyani Raja Abdullah, Raja Syamsul Azmir Alhawari, Adam Reda Hasan Shabaneh, Arafat Abdallah Abdelwadod In this paper, a split-ring resonator and an inductively coupled feed technique are designed to improve the RFID tag antennas performance. The presented tag antenna consists of two symmetrical C-shaped resonators with strip line in order to feed the radiating split-ring resonator structures by implementing an inductively coupled feed approach placed on the upper surface of Polytetrafluoroethylene substrate. By selecting a proper length and width of spilt-ring resonator structures, along with desirable coupling distance between two symmetrical C-shaped resonators and spilt-ring resonator structures, the input impedance of tag antenna can be obtained, which leads to attain an excellent conjugate match between antenna and IC chip. The proposed feeding technique and spilt-ring resonator structures offer a better performance of RFID tag among antenna size, reflection coefficient, and gain. The gain of the designed tag antenna is -2.272 dB at its operating frequency (916 MHz), the tag antenna is mounted on a square perfect electrical conductor of 200 mm side length, while the thickness of PEC is 1 mm. The simulation results were verified by the presented method via enhancing the performance of tag antennas for metallic object. IEEE 2015 Conference or Workshop Item PeerReviewed application/pdf en http://psasir.upm.edu.my/id/eprint/56255/1/UHF%20RFID%20split-ring%20resonator%20tag%20antenna%20inductively%20coupled%20feed%20for%20metallic%20object.pdf Erman, Fuad Naim Ahmed and Ismail, Alyani and Raja Abdullah, Raja Syamsul Azmir and Alhawari, Adam Reda Hasan and Shabaneh, Arafat Abdallah Abdelwadod (2015) UHF RFID split-ring resonator tag antenna inductively coupled feed for metallic object. In: 2015 IEEE 12th Malaysia International Conference on Communications (MICC 2015), 23-25 Nov. 2015, Kuching, Sarawak, Malaysia. (pp. 74-76). 10.1109/MICC.2015.7725410
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 In this paper, a split-ring resonator and an inductively coupled feed technique are designed to improve the RFID tag antennas performance. The presented tag antenna consists of two symmetrical C-shaped resonators with strip line in order to feed the radiating split-ring resonator structures by implementing an inductively coupled feed approach placed on the upper surface of Polytetrafluoroethylene substrate. By selecting a proper length and width of spilt-ring resonator structures, along with desirable coupling distance between two symmetrical C-shaped resonators and spilt-ring resonator structures, the input impedance of tag antenna can be obtained, which leads to attain an excellent conjugate match between antenna and IC chip. The proposed feeding technique and spilt-ring resonator structures offer a better performance of RFID tag among antenna size, reflection coefficient, and gain. The gain of the designed tag antenna is -2.272 dB at its operating frequency (916 MHz), the tag antenna is mounted on a square perfect electrical conductor of 200 mm side length, while the thickness of PEC is 1 mm. The simulation results were verified by the presented method via enhancing the performance of tag antennas for metallic object.
format Conference or Workshop Item
author Erman, Fuad Naim Ahmed
Ismail, Alyani
Raja Abdullah, Raja Syamsul Azmir
Alhawari, Adam Reda Hasan
Shabaneh, Arafat Abdallah Abdelwadod
spellingShingle Erman, Fuad Naim Ahmed
Ismail, Alyani
Raja Abdullah, Raja Syamsul Azmir
Alhawari, Adam Reda Hasan
Shabaneh, Arafat Abdallah Abdelwadod
UHF RFID split-ring resonator tag antenna inductively coupled feed for metallic object
author_facet Erman, Fuad Naim Ahmed
Ismail, Alyani
Raja Abdullah, Raja Syamsul Azmir
Alhawari, Adam Reda Hasan
Shabaneh, Arafat Abdallah Abdelwadod
author_sort Erman, Fuad Naim Ahmed
title UHF RFID split-ring resonator tag antenna inductively coupled feed for metallic object
title_short UHF RFID split-ring resonator tag antenna inductively coupled feed for metallic object
title_full UHF RFID split-ring resonator tag antenna inductively coupled feed for metallic object
title_fullStr UHF RFID split-ring resonator tag antenna inductively coupled feed for metallic object
title_full_unstemmed UHF RFID split-ring resonator tag antenna inductively coupled feed for metallic object
title_sort uhf rfid split-ring resonator tag antenna inductively coupled feed for metallic object
publisher IEEE
publishDate 2015
url http://psasir.upm.edu.my/id/eprint/56255/1/UHF%20RFID%20split-ring%20resonator%20tag%20antenna%20inductively%20coupled%20feed%20for%20metallic%20object.pdf
http://psasir.upm.edu.my/id/eprint/56255/
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score 13.18916