A Simple Statistical Model for Turbulence-Induced Fading in Free-Space Optical Systems

N. Chatzidiamantis, H. Sandalidis, G. Karagiannidis, M. Matthaiou
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引用次数: 8

Abstract

In this paper, we propose the Inverse Gaussian (IG) distribution, as a less complex alternative to Log-normal (LN), to describe turbulence-induced fading in free-space optical (FSO) systems operating in weak turbulence conditions and/or in the presence of a large amount of aperture averaging. By conducting goodness of fit tests, we define the range of values of the scintillation index, where the two distributions approximate each other, with a certain significance level. The efficiency of the new model is pointed out by deriving analytical expressions for the calculation of the bit-error rate of two typical FSO systems; an intensity-modulation/direct detection FSO system with M-ary pulse position modulation and a heterodyne FSO system with differential phase shift keying. Numerical examples are provided to clearly illustrate the accuracy of the proposed approach in the weak turbulence regime.
自由空间光学系统湍流衰落的简单统计模型
在本文中,我们提出逆高斯分布(IG)作为对数正态分布(LN)的一种较简单的替代方法,来描述在弱湍流条件下和/或存在大量孔径平均的情况下运行的自由空间光学(FSO)系统中湍流引起的衰落。通过拟合优度检验,我们定义了闪烁指数的取值范围,其中两个分布相互近似,具有一定的显著性水平。通过推导两种典型FSO系统误码率的解析表达式,指出了新模型的有效性;一种采用M-ary脉冲位置调制的强度调制/直接检测FSO系统和一种采用差分相移键控的外差FSO系统。数值算例清楚地说明了该方法在弱湍流状态下的准确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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