TY - JOUR
T1 - Select-response grouping proof and its verification protocol for RFID tags
AU - Lien, Yuan Hung
AU - Leng, Xuefei
AU - Mayes, Keith E.
AU - Chiu, Jung Hui
PY - 2011/3
Y1 - 2011/3
N2 - In this paper, we investigate an application scenario in which the user requires a proof that a group of radio frequency identification (RFID) tags are scanned simultaneously by reading devices. Such a proof is generally called a grouping proof. After examining the existing 'yoking proof' grouping protocols used for RFIDs, an improved protocol called the 'select-response' grouping proof is proposed. Instead of passively awaiting the responses from RFID tags as used in existing protocols, the proposed protocol uses a new mechanism whereby the reader/verifier actively sends commands to each tag, asking for a response and then generating the grouping proof. After this fundamental change, the verification process is simple and flexible. In addition, the proposed protocol can perform multi-group verification and it also possesses collision-free, missing tag identification, and reading order independent properties. Moreover, the proposed protocol protects the mutual authentication, from clandestine scanning and replay attacks, and hence, the overall security is improved.
AB - In this paper, we investigate an application scenario in which the user requires a proof that a group of radio frequency identification (RFID) tags are scanned simultaneously by reading devices. Such a proof is generally called a grouping proof. After examining the existing 'yoking proof' grouping protocols used for RFIDs, an improved protocol called the 'select-response' grouping proof is proposed. Instead of passively awaiting the responses from RFID tags as used in existing protocols, the proposed protocol uses a new mechanism whereby the reader/verifier actively sends commands to each tag, asking for a response and then generating the grouping proof. After this fundamental change, the verification process is simple and flexible. In addition, the proposed protocol can perform multi-group verification and it also possesses collision-free, missing tag identification, and reading order independent properties. Moreover, the proposed protocol protects the mutual authentication, from clandestine scanning and replay attacks, and hence, the overall security is improved.
KW - Collision free
KW - Grouping proof
KW - Missing tag identification
KW - Multi-group verification
KW - Mutual authentication
KW - RFID
KW - Radio frequency identification
KW - Reading order independence
KW - Security
KW - Select-response
KW - Tag
KW - Yoking proof
UR - https://www.scopus.com/pages/publications/79952554877
U2 - 10.1504/IJIIDS.2011.038967
DO - 10.1504/IJIIDS.2011.038967
M3 - 文章
AN - SCOPUS:79952554877
SN - 1751-5858
VL - 5
SP - 101
EP - 118
JO - International Journal of Intelligent Information and Database Systems
JF - International Journal of Intelligent Information and Database Systems
IS - 2
ER -