TY - JOUR
T1 - Accountable credential management system for vehicular communication
AU - Khan, Salabat
AU - Zhu, Liehuang
AU - Yu, Xiaoyan
AU - Zhang, Zijian
AU - Rahim, Mussadiq Abdul
AU - Khan, Maqbool
AU - Du, Xiaojiang
AU - Guizani, Mohsen
N1 - Publisher Copyright:
© 2020 Elsevier Inc.
PY - 2020/10
Y1 - 2020/10
N2 - Social Internet of Vehicles (SIoV) is becoming a reality where private and secure communication is a prerequisite. Various standardization organizations and studies have reached a consensus to use Vehicular Public-key Infrastructure (V-PKI) in order to secure SIoV systems. However, significant security- and trust-related problems remain unsolved. This study presents an Accountable Credential Management System (ACMS) for vehicular communication to solve these problems. ACMS builds on transparency log (Distributed ledger technology) schemes for web PKI but addresses the challenges specific to vehicular communication. ACMS transparently handles certificate-related use cases, namely, certificate provision, registration, validation, and revocation. It also enhances the security of vehicular communication through constant monitoring; hence, assuring that no pseudonym certificate is accepted by vehicles before being logged and witnessed. With an efficient data structure known as the Accumulation Tree (AT), we extend the conventional transparency log to provide a cost-effective and trustworthy authentication process without relying on certificate revocation lists. Time cost and performance analyses show that the proposed approach is feasible and scalable than existing V-PKI schemes. Moreover, using Tamarin Prover, it is verified that our proposed technique provides defense against an active adversary.
AB - Social Internet of Vehicles (SIoV) is becoming a reality where private and secure communication is a prerequisite. Various standardization organizations and studies have reached a consensus to use Vehicular Public-key Infrastructure (V-PKI) in order to secure SIoV systems. However, significant security- and trust-related problems remain unsolved. This study presents an Accountable Credential Management System (ACMS) for vehicular communication to solve these problems. ACMS builds on transparency log (Distributed ledger technology) schemes for web PKI but addresses the challenges specific to vehicular communication. ACMS transparently handles certificate-related use cases, namely, certificate provision, registration, validation, and revocation. It also enhances the security of vehicular communication through constant monitoring; hence, assuring that no pseudonym certificate is accepted by vehicles before being logged and witnessed. With an efficient data structure known as the Accumulation Tree (AT), we extend the conventional transparency log to provide a cost-effective and trustworthy authentication process without relying on certificate revocation lists. Time cost and performance analyses show that the proposed approach is feasible and scalable than existing V-PKI schemes. Moreover, using Tamarin Prover, it is verified that our proposed technique provides defense against an active adversary.
KW - Intelligent Transportation Systems (ITS)
KW - Social Internet of Vehicles (SIoV)
KW - Transparency log
KW - Vehicular Public-key Infrastructure (V-PKI)
UR - http://www.scopus.com/inward/record.url?scp=85087481497&partnerID=8YFLogxK
U2 - 10.1016/j.vehcom.2020.100279
DO - 10.1016/j.vehcom.2020.100279
M3 - Article
AN - SCOPUS:85087481497
SN - 2214-2096
VL - 25
JO - Vehicular Communications
JF - Vehicular Communications
M1 - 100279
ER -