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Characterization of Fog and Snow Attenuations for Free-Space Optical Propagation

机译:自由空间光学传播中雾和雪衰减的特征

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Free Space Optics (FSO) is now a well established access technology, better known for its robustness in transmitting large data volumes in an energy efficient manner. However the BER performance of a FSO ground-link is adversely affected by cloud coverage, harsh weather conditions, and atmospheric turbulence. Fog, clouds and dry snow play a detrimental role by attenuating optical energy transmitted in terrestrial free-space and thus decrease the link availability and reliability. We measured the time variation of received optical signal level during continental fog and dry snowfall over a link distance of 80 m. We perform a detailed analysis of the continental fog and dry snow attenuation results and further characterise them by presenting some useful attenuation statistics and also showing their comparison with the corresponding measured density values collected by a particle sensor device. We propose also an empirical relationship between temperature, relative humidity and optical attenuation values for the continental fog case based on standard curve fitting technique.
机译:自由空间光学(FSO)现在是一种成熟的访问技术,以其以节能方式传输大量数据的鲁棒性而闻名。但是,FSO地面链路的BER性能受云层覆盖,恶劣天气条件和大气湍流的不利影响。雾,云和干雪通过削弱在地面自由空间中传输的光能而发挥有害作用,从而降低了链路的可用性和可靠性。我们在80 m的链路距离上测量了大陆雾和干燥降雪期间接收到的光信号水平的时间变化。我们对大陆雾和干雪的衰减结果进行了详细的分析,并通过提供一些有用的衰减统计数据并对它们进行了进一步的表征,并显示了它们与由粒子传感器设备收集的相应测得的密度值的比较。我们还基于标准曲线拟合技术提出了大陆雾情况下温度,相对湿度和光学衰减值之间的经验关系。

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