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Free space optical communications system performance under atmospheric scattering and turbulence for 850 and 1550 nm operation

机译:在850和1550 nm的工作环境下,大气散射和湍流下的自由空间光通信系统性能

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摘要

In this work, a free space optical communication (FSO) link is proposed and utilized to explore and evaluate the FSO link performance under the joint occurrence of the atmospheric scattering and turbulence phenomena for 850 and 1550 nm operation. Diffraction and nondiffraction-limited systems are presented and evaluated for both wavelengths' operation, considering far-field conditions under different link distances. Bit error rate, pointing error angles, beam divergence angles, and link distance are the main performance indicators that are used to evaluate and compare the link performance under different system configurations and atmospheric phenomena combinations. A detailed study is performed to provide the merits of this work. For both far-field diffraction-limited and nondiffraction-limited systems, it is concluded that 1550 nm system operation is better than 850 nm for the whole presented joint occurrences of atmospheric scattering and turbulence. (C) 2016 Optical Society of America
机译:在这项工作中,提出了一种自由空间光通信(FSO)链路,该链路用于在850和1550 nm工作的大气散射和湍流现象共同发生的情况下探索和评估FSO链路性能。考虑到在不同链路距离下的远场条件,提出并评估了衍射和非衍射限制系统对两种波长的操作。误码率,指向误差角,光束发散角和链接距离是主要性能指标,用于评估和比较不同系统配置和大气现象组合下的链接性能。进行了详细的研究,以提供这项工作的优点。对于远场衍射极限系统和非衍射极限系统而言,得出的结论是,对于整个所呈现的大气散射和湍流联合事件,1550 nm系统操作优于850 nm。 (C)2016美国眼镜学会

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