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SLRV: An RFID Mutual Authentication Protocol Conforming to EPC Generation-2 Standard
SLRV: An RFID Mutual Authentication Protocol Conforming to EPC Generation-2 Standard
Journal from gdlhub / 2016-11-17 04:28:44Oleh : Muawya Naser, Ismat Aldmour, Rahmat Budiarto, Pedro Peris-Lopez, Telkomnika
Dibuat : 2015-09-01, dengan 1 file
Keyword : : lightweight RFID, EPC Class-1 Gen-2, mutual authentication protocol, security analysis
Url : http://journal.uad.ac.id/index.php/TELKOMNIKA/article/view/1440
Having done an analysis on the security vulnerabilities of Radio Frequency Identification (RFID) through a desynchronization and an impersonation attacks, it is revealed that the secret information (i.e.: secret key and static identifier) shared between the tag and the reader is unnecessary. To overcome the vulnerability, this paper introduces Shelled Lightweight Random Value (SLRV) protocol; a mutual authentication protocol with high-security potentials conforming to electronic product code (EPC) Class-1 Generation-2 Tags, based on lightweight and standard cryptography on the tags and readers side, respectively. SLRV prunes de-synchronization attacks where the updating of internal values is only executed on the tags side and is a condition to a successful mutual authentication. Results of security analysis of SLRV, and comparison with existing protocols, are presented.
Having done an analysis on the security vulnerabilities of Radio Frequency Identification (RFID) through a desynchronization and an impersonation attacks, it is revealed that the secret information (i.e.: secret key and static identifier) shared between the tag and the reader is unnecessary. To overcome the vulnerability, this paper introduces Shelled Lightweight Random Value (SLRV) protocol; a mutual authentication protocol with high-security potentials conforming to electronic product code (EPC) Class-1 Generation-2 Tags, based on lightweight and standard cryptography on the tags and readers side, respectively. SLRV prunes de-synchronization attacks where the updating of internal values is only executed on the tags side and is a condition to a successful mutual authentication. Results of security analysis of SLRV, and comparison with existing protocols, are presented.
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