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Channel correlation of free space optical communication systems with receiver diversity in non-Kolmogorov atmospheric turbulence

机译:非Kolmogorov大气湍流接收器多样性自由空间光通信系统的信道相关性

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摘要

Spatial diversity as an effective technique to mitigate the turbulence fading has been widely utilized in free space optical (FSO) communication systems. The received signals, however, will suffer from channel correlation due to insufficient spacing between component antennas. In this paper, the new expressions of the channel correlation coefficient and specifically its components (the large- and small-scale channel correlation coefficients) for a plane wave with aperture effects are derived for horizontal link in moderate-to-strong turbulence, using a non-Kolmogorov spectrum that has a generalized power law in the range of 3-4 instead of the fixed classical Kolmogorov power law of 11/3. And then the influence of power law variations on the channel correlation coefficient and its components are analysed. The numerical results indicated that various value of the power law lead to varying effects on the channel correlation coefficient and its components. This work will help with the further investigation on the fading correlation in spatial diversity systems.
机译:空间多样性作为减轻湍流衰落的有效技术已广泛用于自由空间光学(FSO)通信系统。然而,由于部件天线之间的间隔不足,所接收的信号将受到信道相关性。在本文中,频道相关系数的新表达式以及特定其组件(大型和小型和小型和小型信道相关系数)的平面波具有光圈效应的平面波,用于中等到强湍流中的水平链路,使用a非Kolmogorov光谱,具有3-4的范围内的广义电力法,而不是固定的经典Kolmogorov电力法为11/3。然后分析了电力法变化对信道相关系数及其组分的影响。数值结果表明,电力法的各种值导致对信道相关系数及其组件的不同影响。这项工作将有助于进一步调查空间分集系统中的衰落相关性。

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