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EAAP: Efficient Anonymous Authentication With Conditional Privacy-Preserving Scheme for Vehicular Ad Hoc Networks

IEEE Transactions on Intelligent Transportation Systems · 2017 · Vol. 18(9) · pp. 2467–2476

Abstract

Providing an efficient anonymous authentication scheme in vehicular ad hoc networks (VANETs) with low computational cost is a challenging issue. Even though, there are some existing schemes to provide anonymous authentication, the existing schemes suffer from high computational cost in the certificate and the signature verification process, which leads to high message loss. Therefore, they fail to meet the necessity of verifying hundreds of messages per second in VANETs. In our scheme, we propose an efficient anonymous authentication scheme to avoid malicious vehicles entering into the VANET. In addition, the proposed scheme offers a conditional tracking mechanism to trace the vehicles or roadside units that abuse the VANET. As a result, our scheme revokes the privacy of misbehaving vehicles to provide conditional privacy in a computationally efficient way through which the VANET entities will be anonymous to each other until they are revoked from the VANET system. Moreover, the proposed scheme is implemented and the performance analysis shows that our scheme is computationally efficient with respect to the certificate and the signature verification process by keeping conditional privacy in VANETs.

Vehicular Ad Hoc Networks (VANETs)Privacy-Preserving Technologies in DataAdvanced Authentication Protocols SecurityVehicular ad hoc networkComputer scienceScheme (mathematics)Authentication (law)Wireless ad hoc networkCertificateComputer networkGroup signatureComputer securityMessage authentication code
Citations
469
FWCI
15.73
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References
35
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References
Elliptic curve cryptosystems
Mathematics of Computation · 1987 · 4,975 citations
GSIS: A Secure and Privacy-Preserving Protocol for Vehicular Communications
IEEE Transactions on Vehicular Technology · 2007 · 913 citations
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