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IEICE Transactions on Fundamentals of Electronics, Communications and Computer Sciences
Online ISSN : 1745-1337
Print ISSN : 0916-8508
Regular Section
Localization of Passive RFID Tags by Using Broad-Type Multi-Sensing-Range (B-MSR) Method
Manato FUJIMOTOTomotaka WADAAtsuki INADAEmi NAKAMORIYuki ODAKouichi MUTSUURAHiromi OKADA
Author information
  • Manato FUJIMOTO

    Faculty of Engineering Science, Kansai University

  • Tomotaka WADA

    Faculty of Engineering Science, Kansai University

  • Atsuki INADA

    Faculty of Engineering Science, Kansai University

  • Emi NAKAMORI

    Faculty of Engineering Science, Kansai University

  • Yuki ODA

    Faculty of Engineering Science, Kansai University

  • Kouichi MUTSUURA

    Faculty of Economics, Shinshu University

  • Hiromi OKADA

    Faculty of Engineering Science, Kansai University

Corresponding author

ORCID
Keywords:RFID reader,RFID tag,position estimation,sensor model,broad-type multi-sensing-range method
JOURNALRESTRICTED ACCESS

2012 Volume E95.AIssue 7Pages 1164-1174

DOIhttps://doi.org/10.1587/transfun.E95.A.1164
Details
  • Published: July 01, 2012Manuscript Received: July 11, 2011Released on J-STAGE: July 01, 2012Accepted: -Advance online publication: -Manuscript Revised: February 15, 2012
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Abstract
The radio frequency identification (RFID) system has attracting attention as a new identification source that achieves a ubiquitous environment. Each RFID tag has a unique ID code, and is attached on an object whose information it contains. A user reads the unique ID code using RFID readers and obtains information about the object. One of the important applications of RFID technology is the indoor position estimation of RFID tags. It can be applied to navigation systems for people in complex buildings. In this paper, we propose an effective position estimation method named Broad-type Multi-Sensing-Range (B-MSR) method to improve the estimation error of the conventional methods using sensor model. A new reader antenna with two flexible antenna elements is introduced into B-MSR. The distance between two flexible antenna elements can be adjusted. Thus, two kinds of system parameters can be controlled, the distance between two antenna elements and the transmission power of the RFID reader. In this paper, four sensing ranges are settled by controlling the values of two parameters. The performance evaluation shows four characteristics of B-MSR. Firstly, it reduces the initial estimation error. Secondly, it reduces the moving distance. Thirdly, it reduces the number of different sensing points. Fourthly, it shortens the required estimation time.
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© 2012 The Institute of Electronics, Information and Communication Engineers
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