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Modeling of 830 nm FSO Link Attenuation in Fog or Wind Turbulence

机译:雾或风湍流中830 nm FSO链路衰减的建模

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摘要

This study is focused on the experimental research of the atmosphere impact on FSO link attenuation. Experiment is performed on a mountain observatory Milesovka of severe weather conditions. The empirical relationships on 830 nm only between FSO attenuation A on one hand and atmospheric visibility V or wind turbulent energy ET on the other hand are presented and discussed. In the fog case it was found A= 401.4V-0.5738- 1.462 dB/60m (V in meters) while for the attenuation due to the wind turbulence ET it holds A = 2.112 - 2.213 exp(-0.2867ET) dB/60m (ET in m2s-2, it was derived for 830 nm wave length). A discussion concerning problems of the “clear air attenuation,” atmospheric turbulences and sun shine impact, which was observed as a maximum 2 dB attenuation for a few minutes with a period of 24 hours is added.
机译:这项研究的重点是大气对FSO链路衰减的影响的实验研究。实验是在恶劣天气条件下的山天文台Milesovka上进行的。提出并讨论了一方面FSO衰减A与另一方面大气可见度V或风湍能ET之间仅在830 nm上的经验关系。在有雾的情况下,发现A = 401.4V-0.5738- 1.462 dB / 60m(V,以米为单位),而对于由于风湍流ET引起的衰减,其保持为A = 2.112-2.213 exp(-0.2867ET)dB / 60m( ET以m2s-2为单位,是针对830 nm波长得出的。增加了有关“畅通的空气衰减”,大气湍流和阳光照射问题的讨论,在24小时内,几分钟内观察到最大衰减为2 dB。

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