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利用调制伽马-伽马辐照度分布实现激光地对卫星链路在湍流和光束漂移情况下的性能。

Performance of a laser Earth-to-satellite link over turbulence and beam wander using the modulated gamma-gamma irradiance distribution.

作者信息

Sandalidis Harilaos G

机构信息

Department of Computer Science and Biomedical Informatics, University of Central Greece, Papasiopoulou 2–4, GR-35100 Lamia, Greece.

出版信息

Appl Opt. 2011 Feb 20;50(6):952-61. doi: 10.1364/AO.50.000952.

Abstract

We present an analytical framework for the performance evaluation of laser satellite uplinks over the major probabilistic impairments, i.e., atmospheric turbulence and beam wander. Specifically, we consider a ground-station-to-space laser uplink with a Gaussian beam wave model, and we focus on the particular regime assuming untracked beams where beam wandering takes place. In that regime, the modulated gamma-gamma distribution has been proposed as an effective irradiance model to characterize the combined effect of turbulence and beam wander. First we provide a closed-form expression of the probability density function and deduce the fundamental statistics of the new model. Then we evaluate the performance of the laser system assuming coherent detection for several modulation schemes. An appropriate set of numerical results is presented to verify the accuracy of the derived expressions.

摘要

我们提出了一个分析框架,用于评估激光卫星上行链路在主要概率性损伤(即大气湍流和光束漂移)情况下的性能。具体而言,我们考虑一个采用高斯光束波模型的地面站到太空激光上行链路,并聚焦于假设光束未跟踪且发生光束漂移的特定情况。在该情况下,已提出调制伽马 - 伽马分布作为一种有效的辐照度模型,以表征湍流和光束漂移的综合影响。首先,我们给出概率密度函数的闭式表达式,并推导新模型的基本统计量。然后,我们针对几种调制方案,在假设采用相干检测的情况下评估激光系统的性能。给出了一组合适的数值结果以验证推导表达式的准确性。

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