EDAKA-IoV is presented, an elliptic-curve-cryptography-based AKA scheme that separates admission filtering from end-to-end session-key establishment and provides a balanced authentication solution for resource-sensitive IoV deployments.
Abstract
The Internet of Vehicles (IoV) relies on frequent vehicle-to-roadside-unit (RSU) access over open wireless channels, making efficient authentication and key establishment essential. In many existing authentication and key agreement (AKA) schemes, a target RSU receives and processes a request before an invalid sender is rejected, which can waste roadside computation under dense invalid-request traffic. This paper presents EDAKA-IoV, an elliptic-curve-cryptography-based AKA scheme that separates admission filtering from end-to-end session-key establishment. A trusted authority (TA) performs Lightweight Polynomial-based Pre-Verification (LPPV) to discard invalid authentication requests before they reach the target RSU, while the vehicle and RSU establish the final session key. A current–pending dual-state mechanism prevents permanent de-synchronization during dynamic pseudo-identity renewal without adding another communication round. Formal analysis under an eCK-style model, ProVerif verification, and heuristic analysis evaluate session-key secrecy, injective mutual authentication, privacy, and resistance to the considered attacks. Optional offline precomputation moves two fixed-base scalar multiplications outside the online phase and reduces the non-polynomial online computation component by approximately 48.8%. With fixed-length compressed point encoding, the authentication exchange requires 2336 bits. The workload analysis shows that the RSU-side processing reduction is proportional to the invalid-request ratio, while the TA still performs record lookup, hashing, and degree-dependent polynomial evaluation for every received request. EDAKA-IoV therefore provides a balanced authentication solution for resource-sensitive IoV deployments.
A lightweight cross-domain mutual authentication scheme (LCMA) for IoV that reduces the need to maintain a large-scale pre-stored CRP database while avoiding repeated reuse of static authentication materials and achieves low computational and communication overhead in comparison with representative schemes.
Xiyuan Ma, Junbeom Hur· Journal of King Saud Univers...· 0 citations
Vehicle-to-Vehicle (V2V) communication in Vehicular Ad Hoc Networks (VANETs) is vulnerable to impersonation, privacy leakage, and other security threats over open wireless channels. Existing authentication schemes commonly rely on a centralized trusted authority (TA), resulting in increased latency and limited scalabil...
Ji-Ping Li, Zhi-Xi Hu, Yi-Ning Liu et al.· 2026 2nd International Confe...· 0 citations
When resource-constrained Internet of Things (IoT) terminals connect to industrial control, sensing, and edge systems, it is necessary to balance low-overhead authentication, credential privacy protection, and cross-platform deployment. Traditional password and USBKEY authentication methods rely on static credentials a...
Jian-Xin Wang, Zi-Fan Xu, Run-Ze Zhou et al.· Journal of King Saud Univers...· 0 citations
A secure, lightweight, and scalable communication protocol was developed for a 5G-enabled SDN-IoV environment to ensure integrity, trust, and dependability in the SDN-enabled IoV environment.
R. J. Lawande, Sudhir Lande, M. Lande· Future Technology· 0 citations
With the rapid development of vehicular ad hoc networks (VANETs), cross-domain authentication and session key negotiation have become indispensable to ensure communication security. This article proposes a tree-based hierarchical authentication and dynamic key update protocol in intelligent transportation systems (ITSs...
Jun-Li Tang, Xiao-Jun Zhang, Nan Zhang et al.· IEEE Internet of Things Jour...· 0 citations
Vehicle-to-infrastructure (V2I) handover authentication constitutes a cornerstone for 6G-enabled Internet of Vehicles (IoV). Nevertheless, existing schemes face challenges including high latency, privacy breaches, poor scalability, and signature injection attacks in batch verification. This article proposes a fast and...
Suhui Liu, Cheng Huang, Li-Qun Chen et al.· IEEE Internet of Things Jour...· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.