Zhang Cao, Teng Cheng, Qin Shi, Xiyu Fang, Qiang Zhang, Ze Yang
With the rapid development of integrated vehicle-road-cloud systems, RoadSide Units (RSUs) have become crucial for communication in Vehicular Ad hoc Networks (VANETs). However, RSU failures disrupt real-time vehicle-to-cloud connectivity, exacerbating traffic congestion and safety risks. Recently, Unmanned Aerial Vehicles (UAVs) have emerged as a promising solution for temporary mobile base stations due to their rapid deployment and flexibility. Nevertheless, the open and dynamic nature of UAV-vehicle communication networks presents critical challenges in achieving both secure communication and lightweight authentication. Furthermore, the unsupervised deployment environment of UAVs makes them particularly vulnerable to physical attacks. To address these challenges, in this paper, we propose a secure and lightweight UAV-assisted vehicle authentication scheme based on quantum key. The scheme leverages quantum keys, hash functions and XOR to ensure secrecy and traceability of malicious entities. Utilising the Physical Unclonable Function (PUF) and fuzzy extractor to resist physical attacks. A private blockchain architecture is implemented for secure data storage and management. We verify the scheme’s security using the real-or-random (ROR) oracle model and the Scyther tool. The experimental results show that, compared to other schemes, our scheme has a lower overhead, with an average packet loss rate reduction of 11.42% – 28.8% and an average communication delay reduction of 14.41%–63%.