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Results of attenuation-measurements for Optical Wireless channels under dense fog conditions regarding different wavelengths

机译:关于不同波长的密集雾条件下光无线通道衰减测量结果

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Free Space Optics (FSO) has gained considerable importance in this decade of demand for high bandwidth transmission capabilities. FSO can provide the last mile solution, but the availability and reliability issues concerned with it can not be ignored, and requires thorough investigations. In this work, we present our results about light attenuation at 950 and 850 nm wavelengths in continental city fog conditions with peak values up to 130 dB/km and compare them with attenuation under dense maritime conditions with peak values up to 480 dB/km. Dense fog is the most severe limiting factor in terrestrial optical wireless applications and light propagation in fog has properties in the spatial, spectral and the time domain, which are of importance to free-space optic data communication. In 2004 (within a short term scientific mission of COST 270) measurements of very dense maritime fog and low clouds were made in the mountains of La Turbie, close to the coast of southern France. Using the same equipment, the measurements were continued for the conditions of the continental city of Graz, Austria. This campaign was done in the winter months from 2004 to 2005 and 2005 to 2006 and allows us to compare fog properties for different environments, and the impact of snow fall. We provide detail analysis of a fog and a snow event for better understanding of their attenuation behavior.
机译:自由空间光学(FSO)在对高带宽传输能力的需求下降的十年中获得了相当高的重要性。 FSO可以提供最后一英里的解决方案,但与其不容忽视的可用性和可靠性问题,并需要彻底的调查。在这项工作中,我们向大陆城雾条件下的950和850nm波长的光衰减结果提供了高达130 dB / km的峰值,并将其与衰减在致密的海上条件下进行比较,峰值值高达480 dB / km。致密雾是地面光学无线应用中最严重的限制因素,雾中的光传播在空间,光谱和时域中具有属性,这对自由空间视镜数据通信具有重要性。在2004年(在短期内的COMPIC COMPET COMPET COMPET COMPET COMPET COMPET COMPET)中,在LA TCBIE的山脉中,在南部法国海岸的山区进行了非常密集的海上雾和低云。使用相同的设备,奥地利格拉茨大陆市的条件继续进行测量。这项运动是在2004年至2005年和2005年至2006年的冬季完成的,并允许我们比较不同环境的雾属性,雪落的影响。我们提供对雾和雪事件的详细分析,以便更好地了解其衰减行为。

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