VLC Physical Layer Security through RIS-aided Jamming Receiver for 6G Wireless Networks

05/18/2022
by   Simone Soderi, et al.
0

Visible Light Communication (VLC) is one the most promising enabling technology for future 6G networks to overcome Radio-Frequency (RF)-based communication limitations thanks to a broader bandwidth, higher data rate, and greater efficiency. However, from the security perspective, VLCs suffer from all known wireless communication security threats (e.g., eavesdropping and integrity attacks). For this reason, security researchers are proposing innovative Physical Layer Security (PLS) solutions to protect such communication. Among the different solutions, the novel Reflective Intelligent Surface (RIS) technology coupled with VLCs has been successfully demonstrated in recent work to improve the VLC communication capacity. However, to date, the literature still lacks analysis and solutions to show the PLS capability of RIS-based VLC communication. In this paper, we combine watermarking and jamming primitives through the Watermark Blind Physical Layer Security (WBPLSec) algorithm to secure VLC communication at the physical layer. Our solution leverages RIS technology to improve the security properties of the communication. By using an optimization framework, we can calculate RIS phases to maximize the WBPLSec jamming interference schema over a predefined area in the room. In particular, compared to a scenario without RIS, our solution improves the performance in terms of secrecy capacity without any assumption about the adversary's location. We validate through numerical evaluations the positive impact of RIS-aided solution to increase the secrecy capacity of the legitimate jamming receiver in a VLC indoor scenario. Our results show that the introduction of RIS technology extends the area where secure communication occurs and that by increasing the number of RIS elements the outage probability decreases.

READ FULL TEXT
research
12/01/2020

Physical Layer Security Enhancement with Reconfigurable Intelligent Surface-Aided Networks

Reconfigurable intelligent surface (RIS)-assisted wireless communication...
research
12/13/2021

On the Physical Layer Security Performance over RIS-aided Dual-hop RF-UOWC Mixed Network

Since security has been one of the crucial issues for high-yield communi...
research
08/01/2020

Achieving Covertness and Secrecy: A New Paradigm for Secure Wireless Communication

This paper explores a novel secure wireless communication paradigm where...
research
12/29/2021

Physical Layer Security Techniques for Future Wireless Networks

The broadcast nature of wireless communication systems makes wireless tr...
research
11/16/2020

Secure Vehicle Communications Using Proof-of-Nonce Blockchain

This paper presents an autonomous driving that achieves physical layer s...
research
05/20/2021

Semantic Security for Indoor THz-Wireless Communication

Physical-layer security (PLS) for industrial indoor terahertz (THz) wire...
research
09/24/2018

SOS - Securing Open Skies

Automatic Dependent Surveillance - Broadcast (ADS-B) is the next generat...

Please sign up or login with your details

Forgot password? Click here to reset