Physical Layer Security Performance of Cooperative Dual RIS-aided V2V NOMA Communications
Farshad Rostami Ghadi, Masoud Kaveh, Kai-Kit Wong, and Diego Martin

TL;DR
This paper analyzes the physical layer security of V2V communication enhanced by dual RISs under NOMA, deriving analytical expressions for secrecy metrics and demonstrating improved security and reliability in intelligent transportation systems.
Contribution
It introduces a dual RIS-assisted V2V NOMA system model with Fisher-Snedecor F fading and derives new analytical expressions for secrecy capacity, outage probability, and energy efficiency.
Findings
Dual RIS significantly improves secure V2V communication reliability.
Analytical expressions for secrecy metrics under Fisher-Snedecor F fading are provided.
Numerical results confirm enhanced security and ultra-reliable transmission.
Abstract
This paper investigates the performance of physical layer security (PLS) in a vehicle-to-vehicle (V2V) communication system, where a transmitter vehicle exploits a dual reconfigurable intelligent surface (RIS) to send confidential information to legitimate receiver vehicles under the non-orthogonal multiple access (NOMA) scheme in the presence of an eavesdropper vehicle. In particular, it is assumed that an RIS is near the transmitter vehicle and another RIS is close to the receiver vehicles to provide a wider smart radio environment. Besides, we suppose that the channels between two RISs suffer from the Fisher-Snedecor F fading model. Under this scenario, we first provide the marginal distributions of equivalent channels at the legitimate receiver vehicles by exploiting the central limit theorem (CLT). Then, in order to evaluate the PLS performance of the considered secure…
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Taxonomy
TopicsAdvanced Wireless Communication Technologies · Wireless Communication Security Techniques · Nanocluster Synthesis and Applications
