Recent developments on free space optical links and wavelength analysis

T. Plank, E. Leitgeb, M. Loeschnigg
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引用次数: 23

Abstract

New results derived from the research in the field of Free Space Optics (FSO) for the qualification of different wavelengths with reference to space applications are presented. At the beginning, a brief introduction to the FSO technology and the explanation of some performance evaluation criteria is presented. The main part deals with a thorough discussion of the different optical wavelengths used either for terrestrial as well as for near-Earth and deep space FSO links. Some optical signal propagation experiments through the atmosphere (including the recent investigations in airborne and satellite application for FSO) are also shown. Practical results of COST Action IC-0802 are implemented in the modelling of the FSO channel under deteriorating conditions like rain, snow, dust, fog, clouds and other atmospheric effects. It is intended to interconnect well-proved technologies like 850 nm and 1,064 nm wavelength with new technologies under development like 10 µm wavelength. Quantum Cascade Lasers (QCLs) are currently experiencing a strong progression. Semiconductor quantum cascade lasers can operate at various wavelengths between 3 µm up to 17 µm what makes them attractive in view of the 10 µm technology. Finally, some recent major performance improvement results obtained by employing some specific modulation and coding schemes are presented.
自由空间光链路和波长分析的最新进展
介绍了自由空间光学(FSO)领域在空间应用中对不同波长进行定性研究的新成果。本文首先对FSO技术进行了简要介绍,并对一些性能评价标准进行了说明。主要部分是对用于地面以及近地和深空FSO链路的不同光学波长进行了深入的讨论。本文还介绍了一些光信号在大气中的传播实验(包括近年来在机载和卫星上应用的研究)。成本行动IC-0802的实际结果在雨、雪、尘、雾、云和其他大气影响等恶化条件下的FSO信道建模中得到了实现。它旨在将850 nm和1064 nm波长等成熟技术与10 μ m波长等正在开发的新技术互连起来。量子级联激光器(qcl)目前正经历着强有力的发展。半导体量子级联激光器可以在3µm到17µm之间的各种波长下工作,这使得它们在10µm技术中具有吸引力。最后,介绍了采用一些特定的调制和编码方案所取得的主要性能改进结果。
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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