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.
翻译:可见光光通信(VLC)是未来6G网络最有希望的技术之一,通过宽宽带带宽带宽带宽、数据率更高、效率更高,为未来6G网络克服基于无线电-频基通信限制提供了最有希望的赋能技术。然而,从安全角度看,VLC受到所有已知的无线通信安全威胁(例如窃听和完整攻击)的影响。为此,安全研究人员正在提出保护这种通信的创新的物理层安全(PLS)算法。在不同的解决方案中,创新的反思智能地面技术(RIS)以及VLCs在近期提高VLC通信能力的工作中得到了成功展示。然而,迄今为止,文献仍然缺乏分析和解决方案来展示基于RISVLC通信的PLS能力。在本文中,我们将水标记和阻断原始部分的算法结合起来,以便在物理层确保VLC通信的安全性能。我们的解决方案利用RIS技术来改善通信的安全性能。通过一个优化框架,我们可以计算RIS各阶段的进展阶段,在不增加甚深处的精确度上显示我们的任何干扰。