Title :
Compact Printable Chipless RFID Systems
Author :
Islam, Md Aminul ; Karmakar, Nemai Chandra
Author_Institution :
Dept. of Electr. & Comput. Syst. Eng., Monash Univ., Clayton, VIC, Australia
Abstract :
Two novel compact printable chipless RFID systems are presented, which are: 1) a dual-polarized (DP) system and 2) an orientation insensitive (OI) system. Chipless tags for both the DP and OI systems consist of horizontally (H) and vertically (V) polarized “I” shaped slot resonators of different lengths, which create frequency signatures in the backscattered signal. Here, different V-H slots are used in the DP tag to double the encoding capacity within a fixed bandwidth and same V-H slots are used in the OI tag to achieve orientation insensitivity. Next, for reading these DP and OI tags, a low-profile low-cost wideband DP aperture coupled microstrip patch antenna (ACMPA) with high port-to-port isolation is developed as well. A reader with DP transmission and reception is capable of reading both the DP and OI tags. These single-sided compact tags are directly printable using conductive ink. Here, DP tags with double data capacity are suitable for fixed orientation applications demanding high data capacity, whereas OI tags are suitable for low data capacity applications requiring orientation insensitivity. Moreover, the developed commercially suitable DP ACMPA can also be used universally for reading all other frequency-domain-based tags.
Keywords :
antenna radiation patterns; aperture-coupled antennas; backscatter; broadband antennas; microstrip antennas; radiofrequency identification; resonators; slot antennas; DP reception; DP system; DP transmission; OI system; backscattered signal; chipless tags; compact printable chipless RFID systems; conductive ink; data capacity; dual-polarized system; encoding capacity; frequency signatures; frequency-domain-based tags; horizontally polarized I shaped slot resonators; low-profile low-cost wideband DP aperture coupled microstrip patch antenna; orientation insensitive system; orientation insensitivity; vertically polarized I shaped slot resonators; Antenna measurements; Encoding; Harmonic analysis; RFID tags; Resonant frequency; Simulation; Aperture-coupled antennas; RF identification (RFID); RFID tags; frequency-selective surfaces (FSSs);
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
DOI :
10.1109/TMTT.2015.2482968