RFID Tag Design Using Spiral Resonators and Defected Ground Structure

This paper presents a simple generalized approach to design a compact chipless radio frequency identification tag. The proposed chipless tag encodes data into the spectral signature using a set of spiral resonators on both sides of substrate. Transmission amplitude component of the tag is used for d...

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Main Authors: M. Veysi, A. Ahmadi, G. Karimi, A. Lalbakhsh
Format: Article
Language:English
Published: Spolecnost pro radioelektronicke inzenyrstvi 2017-12-01
Series:Radioengineering
Subjects:
Online Access:https://www.radioeng.cz/fulltexts/2017/17_04_1019_1024.pdf
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author M. Veysi
A. Ahmadi
G. Karimi
A. Lalbakhsh
author_facet M. Veysi
A. Ahmadi
G. Karimi
A. Lalbakhsh
author_sort M. Veysi
collection DOAJ
description This paper presents a simple generalized approach to design a compact chipless radio frequency identification tag. The proposed chipless tag encodes data into the spectral signature using a set of spiral resonators on both sides of substrate. Transmission amplitude component of the tag is used for data encoding. For miniaturization purpose, defected ground structure is used to reduce the circuit size by half compared to the conventional cascading technique. The proposed chipless tag operates between 4-6 GHz and produces 256 different binary strings through eight encoded bits. Measurement and simulation results verify the authenticity of this design.
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spelling doaj.art-2cbb79c1c96f4c869a1606a0d31b28a42022-12-21T21:17:25ZengSpolecnost pro radioelektronicke inzenyrstviRadioengineering1210-25122017-12-0126410191024RFID Tag Design Using Spiral Resonators and Defected Ground StructureM. VeysiA. AhmadiG. KarimiA. LalbakhshThis paper presents a simple generalized approach to design a compact chipless radio frequency identification tag. The proposed chipless tag encodes data into the spectral signature using a set of spiral resonators on both sides of substrate. Transmission amplitude component of the tag is used for data encoding. For miniaturization purpose, defected ground structure is used to reduce the circuit size by half compared to the conventional cascading technique. The proposed chipless tag operates between 4-6 GHz and produces 256 different binary strings through eight encoded bits. Measurement and simulation results verify the authenticity of this design.https://www.radioeng.cz/fulltexts/2017/17_04_1019_1024.pdfDefected Ground Structure (DGS)microstrip linemulti-resonatorradio-frequency identification (RFID)spiral resonator
spellingShingle M. Veysi
A. Ahmadi
G. Karimi
A. Lalbakhsh
RFID Tag Design Using Spiral Resonators and Defected Ground Structure
Radioengineering
Defected Ground Structure (DGS)
microstrip line
multi-resonator
radio-frequency identification (RFID)
spiral resonator
title RFID Tag Design Using Spiral Resonators and Defected Ground Structure
title_full RFID Tag Design Using Spiral Resonators and Defected Ground Structure
title_fullStr RFID Tag Design Using Spiral Resonators and Defected Ground Structure
title_full_unstemmed RFID Tag Design Using Spiral Resonators and Defected Ground Structure
title_short RFID Tag Design Using Spiral Resonators and Defected Ground Structure
title_sort rfid tag design using spiral resonators and defected ground structure
topic Defected Ground Structure (DGS)
microstrip line
multi-resonator
radio-frequency identification (RFID)
spiral resonator
url https://www.radioeng.cz/fulltexts/2017/17_04_1019_1024.pdf
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AT aahmadi rfidtagdesignusingspiralresonatorsanddefectedgroundstructure
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AT alalbakhsh rfidtagdesignusingspiralresonatorsanddefectedgroundstructure