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Physical-Layer Security in Free-Space Optical Communications

机译:自由空间光通信中的物理层安全性

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摘要

The communication between two legitimate peers in the presence of an external eavesdropper is studied from a physical-layer security perspective in the context of free-space optical (FSO) communications. We discuss viable mechanisms to eavesdrop the communication and study the effect of random optical irradiance fluctuations inherent to FSO communications on the probability of achieving a secure transmission. We observe that the joint effect of laser-beam divergence and turbulence-induced fading on the received irradiance, under certain conditions, allows an external eavesdropper close to the legitimate receiver to compromise the communication. Interestingly, we also observe that an eavesdropper placed close to the legitimate transmitter can easily compromise the communication by taking advantage of the larger attenuation suffered by the signal when propagating through the FSO link.
机译:在自由空间光学(FSO)通信的上下文中,从物理层安全性的角度研究了存在外部窃听者的情况下两个合法对等方之间的通信。我们讨论了窃听通信的可行机制,并研究了FSO通信固有的随机光辐照度波动对实现安全传输的可能性的影响。我们观察到,在特定条件下,激光束发散和湍流引起的衰落对接收到的辐照的联合影响,使得靠近合法接收器的外部窃听者可以损害通信。有趣的是,我们还观察到靠近合法发射器的窃听者可以利用通过FSO链路传播时信号遭受的较大衰减来轻易破坏通信。

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