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A novel, high surface encoding capacity compact planar multiresonator tailored for Chipless RFID tag applications is discussed in this article. The tag consists of three hexagonal open loop resonators that are etched on the ground plane of a 50Ω microstrip transmission line. It operates within the frequency range of 2.12 GHz to 5.45 GHz, with a bandwidth of 3.33 GHz. Frequency Shift Coding is employed to record the tag's identification in the spectral domain. A maximum of 343 distinct code words can be generated utilizing three resonators. A notable feature of this tag is its capability to achieve distinct resonating frequencies by adjusting the overall dimensions of the slot. The tag prototype is designed and fabricated on an RT5880 lossy substrate, characterized by loss tangent of 0.0009 and dielectric constant of 2.2. Experimental data from actual prototypes are presented to verify the dependability of the suggested design.
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Tom
Strony
12
Opis fizyczny
Bibliogr. 14 poz., fot., rys.
Twórcy
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- Karunya Institute of Technology and Sciences, Coimbatore, India
autor
- Karunya Institute of Technology and Sciences, Coimbatore, India
autor
- N S S College of Engineering, Palakkad, India
Bibliografia
- [1] S. K. Behera and N. C. Karmakar, "Wearable Chipless Radio-Frequency Identification Tags for Biomedical Applications: A Review [Antenna Applications Corner]," in IEEE Antennas and Propagation Magazine, vol. 62, no.3, pp. 94-104, June 2020. https://doi.org/10.1109/MAP.2020.2983978
- [2] F. Liu and Z. Miao, "The Application of RFID Technology in Production Control in the Discrete Manufacturing Industry," 2006 IEEE International Conference on Video and Signal Based Surveillance, Sydney, NSW, Australia, 2006, pp. 68-68. https://doi.org/10.1109/AVSS.2006.111
- [3] L. M. Ni, D. Zhang and M. R. Souryal, "RFID-based localization and tracking technologies," in IEEE Wireless Communications, vol. 18, no. 2, pp. 45-51 https://doi.org/10.1109/MWC.2011.5751295
- [4] V. Sharma and M. Hashmi, "Advances in the Design Techniques and Applications of Chipless RFIDs," in IEEE Access, vol. 9, pp. 79264-79277, 2021. https://doi.org/10.1109/ACCESS.2021.3084056
- [5] V. Sharma and M. Hashmi, "Chipless RFID tag based on open-loop resonator," 2017 IEEE Asia Pacific Microwave Conference (APMC), Kuala Lumpur, Malaysia, 2017, pp. 543-546. https://doi.org/10.1109/APMC.2017.8251502
- [6] A. Habib and M. Nadeem, "Multi-resonator Based Passive Chipless RFID Tag for Tracking Applications," 2023 International Conference on Communication Technologies (ComTech), Rawalpindi, Pakistan, 2023, pp. 69-72. https://doi.org/10.1109/ComTech57708.2023.10165189
- [7] P. Prabavathi and S. Subha Rani, “Modified microstrip transmission line based chipless RFID tag with high bit encoding,” Measurement (Lond.), vol. 190, no. 110684, p. 110684, February 2022. https://doi.org/10.1016/j.measurement.2021.110684
- [8] G. B. W. Mohamed, A. K. M. Z. Hossain, M. Z. A. B. A. Aziz, and S. M. K. Azam, “A Quarter-Circled Multi-Resonator for UWB Re-transmission Based Chipless RFID,” J. Phys. Conf. Ser., vol. 2550, no. 1, p. 012026, August 2023. https://doi.org/10.1088/1742-6596/2550/1/012026
- [9] C. M. Nijas et al., "Chipless RFID Tag Using Multiple Microstrip Open Stub Resonators," in IEEE Transactions on Antennas and Propagation, vol. 60, no. 9, pp. 4429-4432, Sept 2012. https://doi.org/10.1109/TAP.2012.2207081
- [10] W. M. Abdulkawi and A.-F. A. Sheta, “Chipless RFID sensors based on multistate coupled line resonators,” Sens. Actuators A Phys., vol. 309, no. 112025, p. 112025, July 2020. https://doi.org/10.1016/j.sna.2020.112025.
- [11] S. M. Kayser Azam, M. Othman, T. A. Latef, H. A. Illias, A. K. M. Z. Hossain and A. A. Ababneh, "Chipless RFID Tag by V-shaped Multi-resonator for Partial Discharge-affected Equipment Identification," 2023 Innovations in Power and Advanced Computing Technologies (i-PACT), Kuala Lumpur, Malaysia, 2023, pp 1-5. https://doi.org/10.1109/i-PACT58649.2023.10434634
- [12] M. Polivka and M. Svanda, "High Encoding Capacity Chipless RFID Tag," 2023 17th European Conference on Antennas and Propagation (EuCAP), Florence, Italy, 2023, pp. 1-4. https://doi.org/10.23919/EuCAP57121.2023.10133353.
- [13] M. Sumi, S. Mridula, A. Pradeep and B. Paul, "Frequency Shift Coded microstrip shorted stub resonators for Chipless RFID tag applications," 2019 URSI Asia-Pacific Radio Science Conference (AP-RASC), New Delhi, India, 2019, pp. 1-4. https://doi.org/10.23919/URSIAP-RASC.2019.8738461
- [14] J. A. G. Malherbe, Microwave Transmission Line Filters. Norwood, MA, USA: Artech House, 1979.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-091a5d36-a652-4a4b-9270-e7e2c1087376
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