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Tag Anti-Collision Algorithms in Passive and Semi-passive RFID Systems -Part II : CHI Algorithm and Hybrid Q Algorithm by using Chebyshev's Inequality-  

Fan, Xiao (인하대학교 정보통신대학원 이동통신연구실)
Song, In-Chan (인하대학교 정보통신대학원 이동통신연구실)
Chang, Kyung-Hi (인하대학교 정보통신대학원 이동통신연구실)
Shin, Dong-Beom (한국전자통신연구원)
Lee, Heyung-Sub (한국전자통신연구원)
Abstract
Both EPCglobal Generation-2 (Gen2) for passive RFID systems and Intelleflex for semi-passive RFID systems use probabilistic slotted ALOHA with Q algorithm, which is a kind of dynamic framed slotted ALOHA (DFSA), as the tag anti-collision algorithm. A better tag anti-collision algorithm can reduce collisions so as to increase the efficiency of tag identification. In this paper, we introduce and analyze the estimation methods of the number of slots and tags for DFSA. To increase the efficiency of tag identification, we propose two new tag anti-collision algorithms, which are Chebyshev's inequality (CHI) algorithm and hybrid Q algorithm, and compare them with the conventional Q algorithm and adaptive adjustable framed Q (AAFQ) algorithm, which is mentioned in Part I. The simulation results show that AAFQ performs the best in Gen2 scenario. However, in Intelleflex scenario the proposed hybrid Q algorithm is the best. That is, hybrid Q provides the minimum identification time, shows the more consistent collision ratio, and maximizes throughput and system efficiency in Intelleflex scenario.
Keywords
RFID; Tag Anti-collision; Gen2; Intelleflex; Passive; Semi-passive;
Citations & Related Records
Times Cited By KSCI : 3  (Citation Analysis)
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1 EPCglobal, Radio-Frequency Identity Protocols Class-1 Generation-2 UHF Protocol for Communications at 860 MHz-960MHz Version 1.1.0, Dec. 17, 2005
2 Wang Jianwei, Wang Dong, and Zhao Yuping, "A novel anti-collision algorithm with dynamic tag number estimation for RFID systems," in Proc. Int. Conf. on Communication Technology, Nov. 2006, pp.1-4
3 Klaus Finkenzeller, RFID Handbook - Fundamentals and Applications in Contactless Smart Cards and Identification. 2nd Edition, Wiley, 2003
4 Jae-Ryong Cha and Jae-Hyun Kim, "Dynamic framed slotted ALOHA algorithms using fast tag estimation method for RFID system," in Proc. Consumer Communications and Networking Conf. 2006, Vol.2, Jan. 2006, pp.768-772
5 Cheng-Hao Quan, Hee-Sook Mo, Gil-Yong Choi, Cheol-Sig Pyo, and Jong-Suk Chae, "A study on anti-collision algorithm in Gen2 protocol based RFID systems," KICS Journal, Vol.31, No.6, pp.561-571, Jun. 2006   과학기술학회마을
6 InChan Song, Xiao Fan, KyungHi Chang, Heyungsub Lee, and Dongbeom Shin, "Tag Anti-collision algorithm in passive and semi-passive RFID systems Part I: Adjustable framed Q algorithm and grouping method by using QueryAdjust command," KICS Journal, Vol.33, No.8, pp.794-804, Aug. 2008   과학기술학회마을
7 Frits Schoute, "Dynamic Frame Length ALOHA," IEEE Trans. on Communications, Vol.31, pp.565-568, Apr. 1983   DOI
8 Harald Vogt, "Efficient object identification with passive RFID tags," in Proc. Int. Conf. on Pervasive Computing, Vol.2414, 2002, pp.98-113
9 Heeseok Yoon, Manar Mohaisen, Kyunghi Chang, Jihoon Bae, and Gilyoung Choi, "Performance analysis of wireless communications between tag and reader in EPCglobal Gen-2 RFID system," KEES Journal, Vol.18, No.9, pp.1047-1056, Sep. 2007   과학기술학회마을   DOI
10 Hiroshi Harada and Ramjee Prasad, Simulation and Software Radio for Mobile Communications. Artech House, 2002
11 ISO/IEC 24753, Information technology- Automatic identification and data capture techniques-Radio frequency identification (RFID) for item management -Air interface commands for battery assist and sensor functionality, Feb. 2006
12 Tao Cheng and Li Jin, "Analysis and simulation of RFID anti-collision algorithms," in Proc. The 9th Int. Conf. on Advanced Communication Technology, Vol.1, Feb. 2007, pp.697-701