Completely Pinpointing the Missing RFID Tags in a Time-Efficient Way

Radio Frequency Identification (RFID) technology has been widely used in inventory management in many scenarios, e.g., warehouses, retail stores, hospitals, etc. This paper investigates a challenging problem of complete identification of missing tags in large-scale RFID systems. Although this proble...

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Published in:IEEE transactions on computers Vol. 64; no. 1; pp. 87 - 96
Main Authors: Xiulong Liu, Keqiu Li, Geyong Min, Yanming Shen, Liu, Alex X., Wenyu Qu
Format: Journal Article
Language:English
Published: New York IEEE 01-01-2015
The Institute of Electrical and Electronics Engineers, Inc. (IEEE)
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Abstract Radio Frequency Identification (RFID) technology has been widely used in inventory management in many scenarios, e.g., warehouses, retail stores, hospitals, etc. This paper investigates a challenging problem of complete identification of missing tags in large-scale RFID systems. Although this problem has attracted extensive attention from academy and industry, the existing work can hardly satisfy the stringent real-time requirements. In this paper, a Slot Filter-based Missing Tag Identification (SFMTI) protocol is proposed to reconcile some expected collision slots into singleton slots and filter out the expected empty slots as well as the unreconcilable collision slots, thereby achieving the improved time-efficiency. The theoretical analysis is conducted to minimize the execution time of the proposed SFMTI. We then propose a cost-effective method to extend SFMTI to the multi-reader scenarios. The extensive simulation experiments and performance results demonstrate that the proposed SFMTI protocol outperforms the most promising Iterative ID-free Protocol (IIP) by reducing nearly 45% of the required execution time, and is just within a factor of 1.18 from the lower bound of the minimum execution time.
AbstractList Radio Frequency Identification (RFID) technology has been widely used in inventory management in many scenarios, e.g., warehouses, retail stores, hospitals, etc. This paper investigates a challenging problem of complete identification of missing tags in large-scale RFID systems. Although this problem has attracted extensive attention from academy and industry, the existing work can hardly satisfy the stringent real-time requirements. In this paper, a Slot Filter-based Missing Tag Identification (SFMTI) protocol is proposed to reconcile some expected collision slots into singleton slots and filter out the expected empty slots as well as the unreconcilable collision slots, thereby achieving the improved time-efficiency. The theoretical analysis is conducted to minimize the execution time of the proposed SFMTI. We then propose a cost-effective method to extend SFMTI to the multi-reader scenarios. The extensive simulation experiments and performance results demonstrate that the proposed SFMTI protocol outperforms the most promising Iterative ID-free Protocol (IIP) by reducing nearly 45% of the required execution time, and is just within a factor of 1.18 from the lower bound of the minimum execution time.
Author Yanming Shen
Keqiu Li
Liu, Alex X.
Xiulong Liu
Wenyu Qu
Geyong Min
Author_xml – sequence: 1
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  surname: Wenyu Qu
  fullname: Wenyu Qu
  email: eunice.qu@gmail.com
  organization: Sch. of Inf. & Technol., Dalian Maritime Univ., Dalian, China
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Snippet Radio Frequency Identification (RFID) technology has been widely used in inventory management in many scenarios, e.g., warehouses, retail stores, hospitals,...
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SubjectTerms completely pinpointing
Computer simulation
Educational institutions
Electronic mail
Hospitals
Inventory management
Lower bounds
Mathematical models
missing tag
optimization
Protocols
Radio frequency identification
Radio Frequency Identification (RFID) systems
Real time
Real-time systems
Retail stores
RFID tags
Simulation
Tags
time efficiency
Vectors
Title Completely Pinpointing the Missing RFID Tags in a Time-Efficient Way
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