Cargando…

A Compact and Flexible UHF RFID Tag Antenna for Massive IoT Devices in 5G System

Upcoming 5th-generation (5G) systems incorporate physical objects (referred to as things), which sense the presence of components such as gears, gadgets, and sensors. They may transmit many kinds of states in the smart city context, such as new deals at malls, safe distances on roads, patient heart...

Descripción completa

Detalles Bibliográficos
Autores principales: Hussain, Muhammad, Amin, Yasar, Lee, Kyung-Geun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7582722/
https://www.ncbi.nlm.nih.gov/pubmed/33049987
http://dx.doi.org/10.3390/s20195713
_version_ 1783599257089998848
author Hussain, Muhammad
Amin, Yasar
Lee, Kyung-Geun
author_facet Hussain, Muhammad
Amin, Yasar
Lee, Kyung-Geun
author_sort Hussain, Muhammad
collection PubMed
description Upcoming 5th-generation (5G) systems incorporate physical objects (referred to as things), which sense the presence of components such as gears, gadgets, and sensors. They may transmit many kinds of states in the smart city context, such as new deals at malls, safe distances on roads, patient heart rhythms (especially in hospitals), and logistic control at aerodromes and seaports around the world. These serve to form the so-called future internet of things (IoT). From this futuristic perspective, everything should have its own identity. In this context, radio frequency identification (RFID) plays a specific role, which provides wireless communications in a secure manner. Passive RFID tags carry out work using the energy harvested among massive systems. RFID has been habitually realized as a prerequisite for IoT, the combination of which is called IoT RFID (I-RFID). For the current scenario, such tags should be productive, low-profile, compact, easily mountable, and have eco-friendly features. The presently available tags are not cost-effective and have not been proven as green tags for environmentally friendly IoT in 5G systems nor are they suitable for long-range communications in 5G systems. The proposed I-RFID tag uses the meandering angle technique (MAT) to construct a design that satisfies the features of a lower-cost printed antenna over the worldwide UHF RFID band standard (860–960 MHz). In our research, tag MAT antennas are fabricated on paper-based Korsnäs by screen- and flexo-printing, which have lowest simulated effective outcomes with dielectric variation due to humidity and have a plausible read range (RR) for European (EU; 866–868 MHz) and North American (NA; 902–928 MHz) UHF band standards. The I-RFID tag size is reduced by 36% to 38% w.r.t. a previously published case, the tag gain has been improved by 23.6% to 33.12%, and its read range has been enhanced by 50.9% and 59.6% for EU and NA UHF bands, respectively. It provides impressive performance on some platforms (e.g., plastic, paper, and glass), thereby providing a new state-of-the-art I-RFID tag with better qualities in 5G systems.
format Online
Article
Text
id pubmed-7582722
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-75827222020-10-28 A Compact and Flexible UHF RFID Tag Antenna for Massive IoT Devices in 5G System Hussain, Muhammad Amin, Yasar Lee, Kyung-Geun Sensors (Basel) Article Upcoming 5th-generation (5G) systems incorporate physical objects (referred to as things), which sense the presence of components such as gears, gadgets, and sensors. They may transmit many kinds of states in the smart city context, such as new deals at malls, safe distances on roads, patient heart rhythms (especially in hospitals), and logistic control at aerodromes and seaports around the world. These serve to form the so-called future internet of things (IoT). From this futuristic perspective, everything should have its own identity. In this context, radio frequency identification (RFID) plays a specific role, which provides wireless communications in a secure manner. Passive RFID tags carry out work using the energy harvested among massive systems. RFID has been habitually realized as a prerequisite for IoT, the combination of which is called IoT RFID (I-RFID). For the current scenario, such tags should be productive, low-profile, compact, easily mountable, and have eco-friendly features. The presently available tags are not cost-effective and have not been proven as green tags for environmentally friendly IoT in 5G systems nor are they suitable for long-range communications in 5G systems. The proposed I-RFID tag uses the meandering angle technique (MAT) to construct a design that satisfies the features of a lower-cost printed antenna over the worldwide UHF RFID band standard (860–960 MHz). In our research, tag MAT antennas are fabricated on paper-based Korsnäs by screen- and flexo-printing, which have lowest simulated effective outcomes with dielectric variation due to humidity and have a plausible read range (RR) for European (EU; 866–868 MHz) and North American (NA; 902–928 MHz) UHF band standards. The I-RFID tag size is reduced by 36% to 38% w.r.t. a previously published case, the tag gain has been improved by 23.6% to 33.12%, and its read range has been enhanced by 50.9% and 59.6% for EU and NA UHF bands, respectively. It provides impressive performance on some platforms (e.g., plastic, paper, and glass), thereby providing a new state-of-the-art I-RFID tag with better qualities in 5G systems. MDPI 2020-10-08 /pmc/articles/PMC7582722/ /pubmed/33049987 http://dx.doi.org/10.3390/s20195713 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Hussain, Muhammad
Amin, Yasar
Lee, Kyung-Geun
A Compact and Flexible UHF RFID Tag Antenna for Massive IoT Devices in 5G System
title A Compact and Flexible UHF RFID Tag Antenna for Massive IoT Devices in 5G System
title_full A Compact and Flexible UHF RFID Tag Antenna for Massive IoT Devices in 5G System
title_fullStr A Compact and Flexible UHF RFID Tag Antenna for Massive IoT Devices in 5G System
title_full_unstemmed A Compact and Flexible UHF RFID Tag Antenna for Massive IoT Devices in 5G System
title_short A Compact and Flexible UHF RFID Tag Antenna for Massive IoT Devices in 5G System
title_sort compact and flexible uhf rfid tag antenna for massive iot devices in 5g system
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7582722/
https://www.ncbi.nlm.nih.gov/pubmed/33049987
http://dx.doi.org/10.3390/s20195713
work_keys_str_mv AT hussainmuhammad acompactandflexibleuhfrfidtagantennaformassiveiotdevicesin5gsystem
AT aminyasar acompactandflexibleuhfrfidtagantennaformassiveiotdevicesin5gsystem
AT leekyunggeun acompactandflexibleuhfrfidtagantennaformassiveiotdevicesin5gsystem
AT hussainmuhammad compactandflexibleuhfrfidtagantennaformassiveiotdevicesin5gsystem
AT aminyasar compactandflexibleuhfrfidtagantennaformassiveiotdevicesin5gsystem
AT leekyunggeun compactandflexibleuhfrfidtagantennaformassiveiotdevicesin5gsystem