Enhancing Security in 6G Visible Light Communications

S. Soderi
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引用次数: 17

Abstract

This paper considers improving the confidentiality of the next generation of wireless communications by using the watermark-based blind physical layer security (WBPLSec) in Visible Light Communications (VLCs). Since the growth of wireless applications and service, the demand for a secure and fast data transfer connection requires new technology solutions capable to ensure the best countermeasure against security attacks. VLC is one of the most promising new wireless communication technology, due to the possibility of using environmental artificial lights as data transfer channel in free-space. On the other hand, VLCs are even inherently susceptible to eavesdropping attacks. This work proposes an innovative scheme in which red, green, blue (RGB) light-emitting-diodes (LEDs) and three color-tuned photo-diodes (PDs) are used to secure a VLC by using a jamming receiver in conjunction with the spread spectrum watermarking technique. To the best of the author's knowledge, this is the first work that deals with physical layer security on VLC by using RGB LEDs.
增强6G可见光通信的安全性
本文研究了在可见光通信(vlc)中使用基于水印的盲物理层安全(WBPLSec)来提高下一代无线通信的保密性。由于无线应用和服务的增长,对安全和快速数据传输连接的需求需要新的技术解决方案,以确保对安全攻击的最佳对策。VLC是一种最有前途的新型无线通信技术,因为它可以在自由空间中使用环境人造光作为数据传输通道。另一方面,VLCs甚至天生就容易受到窃听攻击。这项工作提出了一种创新的方案,其中使用红、绿、蓝(RGB)发光二极管(led)和三个颜色调谐的光电二极管(pd),通过使用干扰接收器和扩频水印技术来保护VLC。据作者所知,这是第一个通过使用RGB led处理VLC上物理层安全性的工作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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