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首页> 外文期刊>Photonics Journal, IEEE >Enhancing Secrecy Capacity in FSO Links via MISO Systems Through Turbulence-Induced Fading Channels With Misalignment Errors
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Enhancing Secrecy Capacity in FSO Links via MISO Systems Through Turbulence-Induced Fading Channels With Misalignment Errors

机译:通过湍流诱导的衰落频道通过MISO系统增强FSO链路中的保密容量,具有未对准错误

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摘要

It has recently been proved that the free-space optical (FSO) communication links are susceptible to interceptions. Due to this reason, the optics community shows a special interest in studying these high-speed links in greater detail from a physical layer security (PLS) point of view. Therefore, in this paper, we propose, for the first time, enhancing the average secrecy capacity (ASC) in FSO links via multiple-input/single-output (MISO) systems. It is well-known that the fading effects in FSO channels can be significantly mitigated by exploiting spatial diversity techniques at the transmitter end. Thus, we develop a new asymptotic closed-form solution at high signal-to-noise-ratio (SNR) to accurately compute the ASC for MISO based FSO communication systems with equal gain combining (EGC) reception through generalized misalignment and atmospheric turbulence-induced fading channels. As a key feature, we investigate the impact of the eavesdropper's orientation along with its location in the pointing error model. We can conclude that the influence of the eavesdropper on recollecting radiated power is diminished considerably by increasing not only the normalized beam width at the receiver end, but also by increasing the number of laser sources. Numerical results are tested by exact Monte Carlo simulations.
机译:最近已经证明了自由空间光学(FSO)通信链路易于拦截。由于这个原因,光学界界面表明了从物理层安全(PLS)的观点更详细地研究这些高速链路的特殊兴趣。因此,在本文中,我们首次提出了通过多输入/单输出(MISO)系统的FSO链路中的平均保密容量(ASC)。众所周知,通过在发射机端的空间分集技术开采空间分集技术,可以显着减轻FSO通道中的衰落效果。因此,我们在高信噪比(SNR)下开发一种新的渐近闭合形式解决方案,以通过广泛的未对准和大气湍流引起的,精确地计算基于MISO的FSO通信系统的MISO通信系统(EGC)接收褪色渠道。作为关键特征,我们调查窃听者方向的影响以及其位置在指向误差模型中。我们可以得出结论,通过不仅增加接收器端的归一化光束宽度,而且通过增加激光源的数量来得出显着减小了窃听器对回忆辐射功率的影响。通过精确的蒙特卡罗模拟测试数值结果。

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