DocumentCode
738998
Title
Third Harmonic Exploitation in Passive UHF RFID
Author
Andiia Vera, Gianfranco ; Duroc, Yvan ; Tedjini, Smail
Author_Institution
Lab. de Conception et d´Integration des Syst., Grenoble-INP, Valence, France
Volume
63
Issue
9
fYear
2015
Firstpage
2991
Lastpage
3004
Abstract
This paper unfolds the recent concept of using harmonic signals generated by the nonlinear behavior of traditional passive UHF RF identification (RFID) chips. The harmonics generation of passive RFID chips is analyzed to highlight the influences of the matching network and the tag antenna. The proposed study relies on a theoretical model that explains the role in the harmonic production of different elements constituting the tag. The model also shows how to achieve a second communication channel exploiting the third harmonic frequency in addition to the fundamental frequency channel. Specifications and methodology are explained in a harmonic communication scenario. The regulations, harmonic RFID reader considerations, harmonic tag guidelines design, and metrics for its evaluation are discussed. In compliance with the standard regulations EPC Class-1 Gen2 RFID, a design example is presented. The performance of the solution is illustrated from simulation and measurements. The prototype example operates simultaneously at fundamental and third harmonic frequencies with a read range greater than 4.5 m.
Keywords
UHF antennas; harmonic generation; radiofrequency identification; wireless channels; UHF RF identification chip; harmonic communication scenario; matching network; passive UHF RFID; second communication channel; standard regulation EPC Class-1 Gen2 RFID; tag antenna; third harmonic exploitation; Dipole antennas; Harmonic analysis; Passive RFID tags; Radio frequency; Schottky diodes; Harmonic balance; RF identification (RFID); UHF passive tags; harmonics; nonlinearity; rectifier; wireless power transfer;
fLanguage
English
Journal_Title
Microwave Theory and Techniques, IEEE Transactions on
Publisher
ieee
ISSN
0018-9480
Type
jour
DOI
10.1109/TMTT.2015.2455495
Filename
7166335
Link To Document