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Wave-optics simulation of the double-pass beam propagation in modulating retro-reflector FSO systems using a corner cube reflector

机译:使用拐角立方体反射器调制复古反射器FSO系统的双通束传播的波光光学仿真

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摘要

Free-space optical (FSO) communication utilizing a modulating retro-reflector (MRR) is an innovative way to convey information between the traditional optical transceiver and the semi-passive MRR unit that reflects optical signals. The reflected signals experience turbulence-induced fading in the double-pass channel, which is very different from that in the traditional single-pass FSO channel. In this paper, we consider the corner cube reflector (CCR) as the retro-reflective device in the MRR. A general geometrical model of the CCR is established based on the ray tracing method to describe the ray trajectory inside the CCR. This ray tracing model could treat the general case that the optical beam is obliquely incident on the hypotenuse surface of the CCR with the dihedral angle error and surface nonflatness. Then, we integrate this general CCR model into the wave-optics (WO) simulation to construct the double-pass beam propagation simulation. This double-pass simulation contains the forward propagation from the transceiver to the MRR through the atmosphere, the retro-reflection of the CCR, and the backward propagation from the MRR to the transceiver, which can be realized by a single-pass WO simulation, the ray tracing CCR model, and another single-pass WO simulation, respectively. To verify the proposed CCR model and double-pass WO simulation, the effective reflection area, the incremental phase, and the reflected beam spot on the transceiver plane of the CCR are analyzed, and the numerical results are in agreement with the previously published results. Finally, we use the double-pass WO simulation to investigate the double-pass channel in the MRR FSO systems. The histograms of the turbulence-induced fading in the forward and backward channels are obtained from the simulation data and are fitted by gamma-gamma (Gamma Gamma) distributions. As the two opposite channels are highly correlated, we model the double-pass channel fading by the product of two correlated Gamma Gamma random variables (RVs). (C) 2017 Optical Society of America
机译:利用调制复古反射器(MRR)的自由空间光学(FSO)通信是一种创新方法,可以在传统光学收发器和反映光信号的半无源MRR单元之间传送信息的创新方法。反射信号在双通道中经历湍流诱导的衰落,这与传统的单通FSO通道中的湍流非常不同。在本文中,我们将角隅棱镜反射器(CCR)视为MRR中的复古反射装置。 CCR的一般几何模型基于光线跟踪方法建立,以描述CCR内的射线轨迹。该射线跟踪模型可以用二向角度误差和表面非污染对光学束倾斜地入射到CCR的斜边表面上的一般情况。然后,我们将该一般CCR模型集成到波光学(WO)仿真中以构造双通波束传播仿真。这种双通仿真包含通过大气,CCR的复古反射和从MRR到收发器的后向传播,这可以通过单通过WO仿真来实现的,从收发器到MRR的前向传播,射线跟踪CCR模型,以及另一个单通过WO模拟。为了验证所提出的CCR模型和双通WO模拟,分析了有效反射区域,增量相位,增量相位和CCR的收发器平面上的反射光束点,数值结果与先前公布的结果一致。最后,我们使用双通WO仿真来研究MRR FSO系统中的双通道通道。从模拟数据获得前向和向后通道中的湍流引起的衰落的直方图,并由伽马 - 伽马(伽马伽马)分布装配。随着两个相对的通道高度相关,我们通过两个相关的伽马伽马随机变量(RVS)的乘积模拟双通道衰落。 (c)2017年光学学会

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  • 来源
    《Applied optics》 |2017年第26期|共10页
  • 作者单位

    Hangzhou Dianzi Univ Coll Commun Engn Hangzhou 310018 Zhejiang Peoples R China;

    Hangzhou Dianzi Univ Coll Commun Engn Hangzhou 310018 Zhejiang Peoples R China;

    Hangzhou Dianzi Univ Coll Commun Engn Hangzhou 310018 Zhejiang Peoples R China;

    Hangzhou Dianzi Univ Coll Commun Engn Hangzhou 310018 Zhejiang Peoples R China;

    Hangzhou Dianzi Univ Coll Commun Engn Hangzhou 310018 Zhejiang Peoples R China;

    Hangzhou Dianzi Univ Coll Commun Engn Hangzhou 310018 Zhejiang Peoples R China;

    CETC Key Lab Aerosp Informat Applicat Shijiazhuang 050081 Hebei Peoples R China;

    CETC Key Lab Aerosp Informat Applicat Shijiazhuang 050081 Hebei Peoples R China;

    Changchun Univ Sci &

    Technol Natl &

    Local Joint Engn Res Ctr Space Optoelect T Changchun 130022 Jilin Peoples R China;

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  • 正文语种 eng
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