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JES. Journal of Engineering Sciences
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Ali, S., Hardan, M. (2013). VARIANTS OF HB PROTOCOLS FOR RFID SECURITY. JES. Journal of Engineering Sciences, 41(No 3), 1151-1174. doi: 10.21608/jesaun.2013.114786
S. A. Ali; M. Hardan. "VARIANTS OF HB PROTOCOLS FOR RFID SECURITY". JES. Journal of Engineering Sciences, 41, No 3, 2013, 1151-1174. doi: 10.21608/jesaun.2013.114786
Ali, S., Hardan, M. (2013). 'VARIANTS OF HB PROTOCOLS FOR RFID SECURITY', JES. Journal of Engineering Sciences, 41(No 3), pp. 1151-1174. doi: 10.21608/jesaun.2013.114786
Ali, S., Hardan, M. VARIANTS OF HB PROTOCOLS FOR RFID SECURITY. JES. Journal of Engineering Sciences, 2013; 41(No 3): 1151-1174. doi: 10.21608/jesaun.2013.114786

VARIANTS OF HB PROTOCOLS FOR RFID SECURITY

Article 20, Volume 41, No 3, May and June 2013, Page 1151-1174  XML PDF (381.26 K)
Document Type: Research Paper
DOI: 10.21608/jesaun.2013.114786
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Authors
S. A. Ali email ; M. Hardan
Electrical Engineering Department, Faculty of Engineering, Assiut University
Abstract
Radio Frequency Identification (RFID) has received recently a great attention from large organizations and researchers due to the dropping tag costs and vigorous RFID standardization. They are becoming more common in daily use to identify, locate and track people, assets, and animals. Number of protocols has been proposed in the literature for the security of RFID against passive attacks. One of the well-known protocols is the HB family protocol which utilizes the complexity of decoding linear codes for RFID security against passive attacks. The nonlinear HB (NLHB) is one member of the HB family protocol which achieves high security by reducing the provably hard problem of decoding a class of nonlinear codes to passive attacks. This paper introduces Multi-Nonlinear Stages to the HB protocol to enhance its security against passive attacks. More specifically, the paper presents two Multi-Nonlinear versions of the HB protocol; Double-Nonlinear HB (DNLHB), and Triple-Nonlinear HB (TNLHB). The proposed protocols increase significantly the security of RFID systems against passive attacks at a lower implementation cost.
Keywords
HB family protocols; NLHB protocol; LPN problem; secure and efficient authentication protocol; passive attacks; RFID tags
Main Subjects
Electrical Engineering, Computer Engineering and Electrical power and machines engineering.
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