• DocumentCode
    1977438
  • Title

    Identification of missing objects with group coding of RF tags

  • Author

    Sato, Yuki ; Igarashi, Yuki ; Mitsugi, Jin ; Nakamura, Osamu ; Murai, Jun

  • Author_Institution
    Auto-ID Lab., Japan at Keio Univ., Fujisawa, Japan
  • fYear
    2012
  • fDate
    3-5 April 2012
  • Firstpage
    95
  • Lastpage
    101
  • Abstract
    Physical objects often form a group such as objects in a shipping container. RFID enables us to identify each object and even the container itself. However, current RFID does not provide information on IDs missing from a group. This paper proposes a method to determine the unique IDs of objects missing from a group without any external database or verifier. The proposed method logically splits a group into mutually overlapped sub-groups and writes group-related information, which is generated from the unique IDs of objects in the subgroup, to RF tags´ memory. When we check the integrity of a group of objects, unique IDs and group-related information of RF tags are extracted from RF tags´ memory. With an iterative decoding over group-related information with the unique IDs of identified objects, missing IDs are determined. A numerical simulation reveals that the proposed method can identify 96-bit unique IDs of up to 64 objects missing from a group composed of 100 objects by writing 840-bit group-related information to each RF tag. We also examined the performance with an experiment and confirmed that we can successfully determine 16-bit IDs of up to 12 missing RF tags from a group of 20 RF tags by writing 280-bit group-related information to each RF tag. The experiment results agree well with the numerical simulation.
  • Keywords
    group codes; iterative decoding; numerical analysis; radiofrequency identification; RF tag memory; RFID; group coding; group-related information; iterative decoding; missing object identification; numerical simulation; object ID; physical object; word length 16 bit; word length 280 bit; word length 840 bit; word length 96 bit; Decoding; Encoding; Equations; Mathematical model; Numerical simulation; Radio frequency; Radiofrequency identification;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    RFID (RFID), 2012 IEEE International Conference on
  • Conference_Location
    Orlando, FL
  • Print_ISBN
    978-1-4673-0329-3
  • Type

    conf

  • DOI
    10.1109/RFID.2012.6193063
  • Filename
    6193063