Physical layer secure transmission in the coexistence of V2I and V2V with RIS assistance

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Abstract

The security of vehicle communication becomes increasingly important due to the transmission requirement of large-scale security and privacy data in the Internet of Vehicles (IoV). This paper investigates the physical layer secure transmission with reconfigurable intelligent surface (RIS) assistance in the coexistence of vehicle-to-infrastructure (V2I) and vehicle-to-vehicle (V2V). It establishes a communication model for physical layer secure transmission where the eavesdropping user exists. Based on this model, we propose a V2I physical layer secure transmission rate (PLSTR) maximization problem and solve it by employing an alternating optimization algorithm based on generalized Rayleigh entropy and semi-definite relaxation programming so as to obtain optimal V2I base station precoding and RIS reflection coefficient matrix. Simulation results further validate the superiority of the proposed algorithm and analyze the impact of relevant parameters on system performance.

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Tang, Z., Song, T., & Hu, J. (2024). Physical layer secure transmission in the coexistence of V2I and V2V with RIS assistance. Eurasip Journal on Wireless Communications and Networking, 2024(1). https://doi.org/10.1186/s13638-024-02387-z

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