A Multiple Hashing Approach to Complete Identification of Missing RFID Tags

Owing to its superior properties, such as fast identification and relatively long interrogating range over barcode systems, Radio Frequency Identification (RFID) technology has promising application prospects in inventory management. This paper studies the problem of complete identification of missi...

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Published in:IEEE transactions on communications Vol. 62; no. 3; pp. 1046 - 1057
Main Authors: Xiulong Liu, Keqiu Li, Geyong Min, Yanming Shen, Liu, Alex X., Wenyu Qu
Format: Journal Article
Language:English
Published: New York, NY IEEE 01-03-2014
Institute of Electrical and Electronics Engineers
The Institute of Electrical and Electronics Engineers, Inc. (IEEE)
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Abstract Owing to its superior properties, such as fast identification and relatively long interrogating range over barcode systems, Radio Frequency Identification (RFID) technology has promising application prospects in inventory management. This paper studies the problem of complete identification of missing RFID tag, which is important in practice. Time efficiency is the key performance metric of missing tag identification. However, the existing protocols are ineffective in terms of execution time and can hardly satisfy the requirements of realtime applications. In this paper, a Multi-hashing based Missing Tag Identification (MMTI) protocol is proposed, which achieves better time efficiency by improving the utilization of the time frame used for identification. Specifically, the reader recursively sends bitmaps that reflect the current slot occupation state to guide the slot selection of the next hashing process, thereby changing more empty or collision slots to the expected singleton slots. We investigate the optimal parameter settings to maximize the performance of the MMTI protocol. Furthermore, we discuss the case of channel error and propose the countermeasures to make the MMTI workable in the scenarios with imperfect communication channels. Extensive simulation experiments are conducted to evaluate the performance of MMTI, and the results demonstrate that this new protocol significantly outperforms other related protocols reported in the current literature.
AbstractList Owing to its superior properties, such as fast identification and relatively long interrogating range over barcode systems, Radio Frequency Identification (RFID) technology has promising application prospects in inventory management. This paper studies the problem of complete identification of missing RFID tag, which is important in practice. Time efficiency is the key performance metric of missing tag identification. However, the existing protocols are ineffective in terms of execution time and can hardly satisfy the requirements of real-time applications. In this paper, a Multi-hashing based Missing Tag Identification (MMTI) protocol is proposed, which achieves better time efficiency by improving the utilization of the time frame used for identification. Specifically, the reader recursively sends bitmaps that reflect the current slot occupation state to guide the slot selection of the next hashing process, thereby changing more empty or collision slots to the expected singleton slots. We investigate the optimal parameter settings to maximize the performance of the MMTI protocol. Furthermore, we discuss the case of channel error and propose the countermeasures to make the MMTI workable in the scenarios with imperfect communication channels. Extensive simulation experiments are conducted to evaluate the performance of MMTI, and the results demonstrate that this new protocol significantly outperforms other related protocols reported in the current literature.
Owing to its superior properties, such as fast identification and relatively long interrogating range over barcode systems, Radio Frequency Identification (RFID) technology has promising application prospects in inventory management. This paper studies the problem of complete identification of missing RFID tag, which is important in practice. Time efficiency is the key performance metric of missing tag identification. However, the existing protocols are ineffective in terms of execution time and can hardly satisfy the requirements of realtime applications. In this paper, a Multi-hashing based Missing Tag Identification (MMTI) protocol is proposed, which achieves better time efficiency by improving the utilization of the time frame used for identification. Specifically, the reader recursively sends bitmaps that reflect the current slot occupation state to guide the slot selection of the next hashing process, thereby changing more empty or collision slots to the expected singleton slots. We investigate the optimal parameter settings to maximize the performance of the MMTI protocol. Furthermore, we discuss the case of channel error and propose the countermeasures to make the MMTI workable in the scenarios with imperfect communication channels. Extensive simulation experiments are conducted to evaluate the performance of MMTI, and the results demonstrate that this new protocol significantly outperforms other related protocols reported in the current literature.
Author Yanming Shen
Keqiu Li
Liu, Alex X.
Xiulong Liu
Wenyu Qu
Geyong Min
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Issue 3
Keywords Performance evaluation
Transmission channel
Reader
RFID
missing tag identification
Simulation
multi-hashing
Hashing
Recursive method
Metric
System identification
RFID tag
Bar code
Radio frequency identification
Execution time
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Snippet Owing to its superior properties, such as fast identification and relatively long interrogating range over barcode systems, Radio Frequency Identification...
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SubjectTerms Applied sciences
Channels
Communication channels
Detection, estimation, filtering, equalization, prediction
Educational institutions
Exact sciences and technology
Information, signal and communications theory
Inventory management
missing tag identification
multi-hashing
Occupation
Optimization
Protocol
Protocols
Radio frequency identification
Radiolocalization and radionavigation
Readers
RFID
RFID tags
Signal and communications theory
Signal, noise
Simulation
Synchronization
Systems, networks and services of telecommunications
Tags
Telecommunications
Telecommunications and information theory
Transmission and modulation (techniques and equipments)
Vectors
Title A Multiple Hashing Approach to Complete Identification of Missing RFID Tags
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