Calibration-Free Chipless Radiofrequency Identification Tags with Enhanced Data Capacity

被引:0
|
作者
Hsu, Jia-Wen [1 ]
Lai, Fei-Pang [1 ]
Chen, Yen-Sheng [1 ]
机构
[1] Natl Taipei Univ Technol, Dept Elect Engn, Taipei, Taiwan
关键词
Fourier transforms; radar cross section; radio frequency identification (RFID); resonators; signal processing;
D O I
10.1109/apmc46564.2019.9038343
中图分类号
TN [电子技术、通信技术];
学科分类号
0809 ;
摘要
In this paper, a chipless radiofrequency identification (RFID) tag that requires no additional radar-cross section (RCS) calibration is proposed. The proposed tag shows the potential for the enhancement of data capacity as high as 22.1 bits. As compared to most of the chipless RFID tag in the literature, the proposed tag shows a distinct feature that it does not need to determine a clutter response in the first place. Such a calibration-free characteristic is implemented thorough a temporal separation detection using short-time Fourier transform (STFT). The high capacity is obtained through a designed spectrum over 2.0-6.0 GHz. The proposed tag consists of four resonators. Each resonator uses two strips forming into a right triangle with a back conductor. By varying the location of the split locations, the resonant frequency of the cross-polarization backscattering can be controlled. Summarizing the controllable states for the four resonators, high capacity is thus obtained. Measured results show that the ID of the tag can be detected without calibrating the clutter response.
引用
收藏
页码:1331 / 1333
页数:3
相关论文
共 46 条
  • [21] Calibration-free quantitative phase imaging using data-driven aberration modeling
    Chang, Taean
    Ryu, DongHun
    Jo, YoungJu
    Choi, Gunho
    Min, Hyun-Seok
    Park, YongKeun
    OPTICS EXPRESS, 2020, 28 (23) : 34835 - 34847
  • [22] Low-Cost Inkjet-Printed Fully Passive RFID Tags for Calibration-Free Capacitive/Haptic Sensor Applications
    Kim, Sangkil
    Kawahara, Yoshihiro
    Georgiadis, Apostolos
    Collado, Ana
    Tentzeris, Manos M.
    IEEE SENSORS JOURNAL, 2015, 15 (06) : 3135 - 3145
  • [23] Calibration-free infrared absorption spectroscopy using cantilever-enhanced photoacoustic detection of the optical power
    Rossi, Jussi
    Vainio, Markku
    PHOTOACOUSTICS, 2024, 40
  • [24] Geometrical effects in data collection and processing for calibration-free laser-induced breakdown spectroscopy
    Shabanov, S. V.
    Gornushkin, I. B.
    JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER, 2018, 204 : 190 - 205
  • [25] Data-Driven and Calibration-Free Lamb Wave Source Localization With Sparse Sensor Arrays
    Harley, Joel B.
    Moura, Jose M. F.
    IEEE TRANSACTIONS ON ULTRASONICS FERROELECTRICS AND FREQUENCY CONTROL, 2015, 62 (08) : 1516 - 1529
  • [26] Quaterni-On: Calibration-free Matching of Wearable IMU Data to Joint Estimates of Ambient Cameras
    Kempfle, Jochen
    Van Laerhoven, Kristof
    2021 IEEE INTERNATIONAL CONFERENCE ON PERVASIVE COMPUTING AND COMMUNICATIONS WORKSHOPS AND OTHER AFFILIATED EVENTS (PERCOM WORKSHOPS), 2021, : 611 - 616
  • [27] Broadband calibration-free cavity-enhanced complex refractive index spectroscopy using a frequency comb
    Johansson, Alexandra C.
    Rutkowski, Lucile
    Filipsson, Anna
    Hausmaninger, Thomas
    Zhao, Gang
    Axner, Ove
    Foltynowicz, Aleksandra
    OPTICS EXPRESS, 2018, 26 (16): : 20633 - 20648
  • [28] Data-Driven Estimation of Driver Attention Using Calibration-Free Eye Gaze and Scene Features
    Hu, Zhongxu
    Lv, Chen
    Hang, Peng
    Huang, Chao
    Xing, Yang
    IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, 2022, 69 (02) : 1800 - 1808
  • [29] Temperature sensor integrated curl resonator chipless RFID tag for high capacity data identification applications
    Malhat, Hend A.
    El-Refaay, Esraa A.
    Zainud-Deen, Saber H.
    MICROSYSTEM TECHNOLOGIES-MICRO-AND NANOSYSTEMS-INFORMATION STORAGE AND PROCESSING SYSTEMS, 2023, 29 (01): : 157 - 168
  • [30] Temperature sensor integrated curl resonator chipless RFID tag for high capacity data identification applications
    Hend A. Malhat
    Esraa A. El-Refaay
    Saber H. Zainud-Deen
    Microsystem Technologies, 2023, 29 : 157 - 168