• Piezoelectrics & Acoustooptics
  • Vol. 46, Issue 6, 846 (2024)
QIAO Liangying1, TANG Zhengkai1, DU Shan2, WU Juan2, XU Hua2, LIU Yijiang2, SHI Ruchuan1, and HAN Tao1
Author Affiliations
  • 1School of Electronic Information and Electrical Engineering, Shanghai Jiaotong University, Shanghai 200240, China
  • 2Shanghai Baosight Software Co. Ltd., Shanghai 201203, China
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    DOI: 10.11977/j.issn.1004-2474.2024.06.003 Cite this Article
    QIAO Liangying, TANG Zhengkai, DU Shan, WU Juan, XU Hua, LIU Yijiang, SHI Ruchuan, HAN Tao. Dual-Antenna Differential SAW RFID Positioning for Unmanned Trains[J]. Piezoelectrics & Acoustooptics, 2024, 46(6): 846 Copy Citation Text show less

    Abstract

    The unmanned driving of industrial trains are key links in the upgrading of traditional industries. However, the industry lacks positioning technology that fulfills the requirements of high reliability, high precision, and low maintenance in the face of harsh environments, such as high temperature, dust, and metal interference. SAW RFID technology has the characteristics of wireless passivity, high-temperature resistance, and resistance to harsh environments. This paper proposes a positioning method based on dual-antenna time-delay difference. Compared with single antenna ranging positioning, the proposed positioning method offsets the influence of environmental temperature and improves positioning accuracy and reliability. A time-delay measurement method based on fractional Fourier transform was studied. Simulation and experimental results show that the delay measurement error can be reduced to one-third of that of the matched filtering method, with an accuracy of 0.35 ns. The experiment based on the built platform showed a positioning accuracy of 6.2 cm, and the error was reduced to 3.48 cm in a shorter interval. Finally, the system was preliminarily applied in a steel plant.
    QIAO Liangying, TANG Zhengkai, DU Shan, WU Juan, XU Hua, LIU Yijiang, SHI Ruchuan, HAN Tao. Dual-Antenna Differential SAW RFID Positioning for Unmanned Trains[J]. Piezoelectrics & Acoustooptics, 2024, 46(6): 846
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