Improvement of Reading Performance of Frequency-Domain Chipless RFID Transponders

This review paper presents the summary of our investigations in several topics of frequency-domain chipless RFID transponders. The performance comparison of various types of scatterers used in the literature and recently proposed by the authors is presented. The issue of proper location of adjacent...

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Main Authors: J. Havlicek, M. Svanda, J. Machac, M. Polivka
Format: Article
Language:English
Published: Spolecnost pro radioelektronicke inzenyrstvi 2016-06-01
Series:Radioengineering
Subjects:
Online Access:http://www.radioeng.cz/fulltexts/2016/16_02_0219_0229.pdf
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author J. Havlicek
M. Svanda
J. Machac
M. Polivka
author_facet J. Havlicek
M. Svanda
J. Machac
M. Polivka
author_sort J. Havlicek
collection DOAJ
description This review paper presents the summary of our investigations in several topics of frequency-domain chipless RFID transponders. The performance comparison of various types of scatterers used in the literature and recently proposed by the authors is presented. The issue of proper location of adjacent resonant elements in the scatterer array to reduce the mutual coupling and consequently ensure the robust RCS response for reliable reading of coded information is addressed. A major improvement in RCS response of transponders is proposed, using slot-in-plate type transponders. Advantages and drawbacks of the proposed solutions are discussed and several open challenges in the field are emphasized.
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spelling doaj.art-f29406701ac248f981ae9fbbb567032a2022-12-21T21:43:42ZengSpolecnost pro radioelektronicke inzenyrstviRadioengineering1210-25122016-06-01252219229Improvement of Reading Performance of Frequency-Domain Chipless RFID TranspondersJ. HavlicekM. SvandaJ. MachacM. PolivkaThis review paper presents the summary of our investigations in several topics of frequency-domain chipless RFID transponders. The performance comparison of various types of scatterers used in the literature and recently proposed by the authors is presented. The issue of proper location of adjacent resonant elements in the scatterer array to reduce the mutual coupling and consequently ensure the robust RCS response for reliable reading of coded information is addressed. A major improvement in RCS response of transponders is proposed, using slot-in-plate type transponders. Advantages and drawbacks of the proposed solutions are discussed and several open challenges in the field are emphasized.http://www.radioeng.cz/fulltexts/2016/16_02_0219_0229.pdfChipless RFIDmutual couplingmonostatic RCS measurementscatterer
spellingShingle J. Havlicek
M. Svanda
J. Machac
M. Polivka
Improvement of Reading Performance of Frequency-Domain Chipless RFID Transponders
Radioengineering
Chipless RFID
mutual coupling
monostatic RCS measurement
scatterer
title Improvement of Reading Performance of Frequency-Domain Chipless RFID Transponders
title_full Improvement of Reading Performance of Frequency-Domain Chipless RFID Transponders
title_fullStr Improvement of Reading Performance of Frequency-Domain Chipless RFID Transponders
title_full_unstemmed Improvement of Reading Performance of Frequency-Domain Chipless RFID Transponders
title_short Improvement of Reading Performance of Frequency-Domain Chipless RFID Transponders
title_sort improvement of reading performance of frequency domain chipless rfid transponders
topic Chipless RFID
mutual coupling
monostatic RCS measurement
scatterer
url http://www.radioeng.cz/fulltexts/2016/16_02_0219_0229.pdf
work_keys_str_mv AT jhavlicek improvementofreadingperformanceoffrequencydomainchiplessrfidtransponders
AT msvanda improvementofreadingperformanceoffrequencydomainchiplessrfidtransponders
AT jmachac improvementofreadingperformanceoffrequencydomainchiplessrfidtransponders
AT mpolivka improvementofreadingperformanceoffrequencydomainchiplessrfidtransponders