无线光通信系统物理层安全研究

Mohanad Obeed, A. Salhab, Mohamed-Slim Alouini, S. Zummo
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引用次数: 25

摘要

由于现有的射频(RF)网络无法满足日益增长的数据速率需求,利用广泛未开发的非规范频谱的光无线通信(OWC)被提出作为一种有前途的技术来克服射频频谱的限制。另一方面,随着高数据速率需求的增加和广播型网络的普及,研究人员最近提出了利用物理层技术提高安全通信的新机制。与RF网络相比,OWC网络更安全,更不易受到拦截,因为led提供的覆盖范围很小,而且它们只有在视距(LoS)组件存在的情况下才能正常工作。然而,OWC网络的安全性仍然是一个问题,特别是在可见光通信(VLC)中,当传输的信息可以被多个用户访问时,如公共区域、会议室、实验室和图书馆。这意味着可能存在潜在的窃听者来收集机密信息。本文综述了两种OWC网络(VLC和FSO)在物理层安全方面所做的所有工作。此外,本文还提出了这些网络中存在的一些开放性问题,以优化和提高安全性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Survey on Physical Layer Security in Optical Wireless Communication Systems
As the existing radio-frequency (RF) networks cannot meet the ever-increasing data rate demand, the optical wireless communication (OWC), which uses a wide untapped unregulated spectrum, has been proposed as a promising technology to overcome the RF spectrum limitations. On the other hand, with the increasing demand for high data rate and the prevalence of the broadcast-nature networks, researchers have recently come up with new mechanisms to improve secure communication using physical layer techniques. Compared to RF networks, the OWC networks are more secure and less susceptible to the interception because of the small coverage provided by LEDs, and because they work properly only in the presence of the line-of-sight (LoS) components. However, the security in OWC networks is still an issue, especially in visible light communication (VLC) when the transmitted information can be accessed by multiple users as in public areas, meeting rooms, laboratories, and libraries. That means potential eavesdroppers may be existing to gather confidential messages. This paper reviews all the conducted work on physical layer security (PLS) in two types of OWC networks, which are the VLC and free space optical (FSO) networks. Furthermore, the paper proposes several open problems in these networks to optimize and enhance the security performance.
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