Performance Analysis of an OCSP-Based Authentication Protocol for VANETs

Author:

Serna-Olvera Jetzabel1,Casola Valentina2,Rak Massimiliano3,Luna Jesús4,Medina Manel1,Mazzocca Nicola2

Affiliation:

1. Technical University of Catalonia, Spain

2. University of Naples Federico II, Italy

3. Second University of Naples, Italy

4. Darmstadt University of Technology, Germany

Abstract

Vehicular Ad-Hoc NETworks (VANETs) improve road safety by preventing and reducing traffic accidents, but VANETs also raise important security and privacy issues. A common approach widely adopted in VANETs is the use of Public Key Infrastructures (PKI) and digital certificates in order to enable authentication and confidentiality, usually relying on a large set of regional Certification Authorities (CAs). Despite the advantages of the latter approach, it raises new problems related with the secure interoperability among the different –and usually unknown- issuing CAs. This paper addresses authentication and interoperability issues in vehicular communications, considering an interregional scenario where mutual authentication between all the nodes is needed. The use of an Authentication Service (AS) is proposed, which supplies vehicles with a trusted set of authentication credentials by implementing a near real-time certificate status service via the well-known Online Certificate Status Protocol (OCSP). The proposed AS also implements a mechanism to quantitatively evaluate the trust level of a CA, in order to decide on-the-fly if an interoperability relationship can be created. The feasibility and performance of the proposed mechanisms are demonstrated via simulations and quantitative analyses by providing a set of communication measurements considering an urban scenario.

Publisher

IGI Global

Subject

General Engineering

Reference37 articles.

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2. Blake-Wilson, S., Brown, D., & Lambert, P. (2002). RFC 3278: Use of elliptic curve cryptography (ECC) algorithms in cryptographic message syntax (CMS). Retrieved from http://www.ietf.org/rfc/rfc3278.txt

3. Borsetti, D., Fiore, M., Casetti, C., & Chiasserini, C.-F. (2009). Cooperative support for localized services in VANETs. In Proceedings of the International Symposium on Modeling Analysis and Simulation of Wireless and Mobile Systems, Tenerife, Spain.

4. Casola, V. (2007). A security metric for public key infrastructures. Journal of Computer Security.

5. Casola, V., Luna, J., Mazzeo, A., Medina, M., Rak, M., & Serna, J. (2010). An interoperability system for authentication and authorisation in VANETs. International Journal of Autonomous and Adaptive Communications Systems, 115-135.

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1. Survey on Issues and Recent Advances in Vehicular Public-Key Infrastructure (VPKI);IEEE Communications Surveys & Tutorials;2022

2. Traffic Congestion and Accident Prevention Analysis for Connectivity in Vehicular Ad-hoc Network;2019 5th International Conference on Signal Processing, Computing and Control (ISPCC);2019-10

3. Managing Certificate Revocation in VANETs Using Hash Trees and Query Frequencies;Computer Aided Systems Theory – EUROCAST 2015;2015

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