Physical Layer Security for Visible Light Communication in the Presence of ISI and NLoS

Cenk Albayrak, H. Arslan, K. Türk
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引用次数: 1

Abstract

Visible light communication (VLC) is an important alternative and/or complementary technology for next generation indoor wireless broadband communication systems. In order to ensure data security for VLC in public areas, many studies in literature consider physical layer security (PLS). These studies generally neglect the reflections in the VLC channel and assume no inter symbol interference (ISI). However, increasing the data transmission rate causes ISI. In addition, even if the power of the reflections is small compared to the line of sight (LoS) components, it can affect the secrecy rate in a typical indoor VLC system. In this study, we investigate the effects of ISI and reflected channel components on secrecy rate in multiple-input single-output (MISO) VLC scenario utilized null-steering (NS) and artificial noise (AN) PLS techniques.
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ISI和NLoS存在下可见光通信的物理层安全
可见光通信(VLC)是下一代室内无线宽带通信系统的重要替代和/或补充技术。为了保证公共区域VLC的数据安全,文献中的许多研究都考虑了物理层安全(PLS)。这些研究通常忽略了VLC信道中的反射,并假设不存在码间干扰。但是,提高数据传输速率会引起ISI。此外,即使反射的功率与视线(LoS)组件相比很小,它也会影响典型室内VLC系统的保密率。在本研究中,我们利用零转向(NS)和人工噪声(AN) PLS技术,研究了ISI和反射信道分量对多输入单输出(MISO) VLC场景下保密率的影响。
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