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Circular polarization and availability in free space optics (FSO) communication systems

机译:自由空间光学(FSO)通信系统中的圆极化和可用性

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A great variety of atmospheric phenomena such as absorption, dispersion and turbulence can cause big variations in the attenuation of the beam of light of a laser. The absorption and the turbulence can be measured by means of a system free space optics (FSO) designed appropriately. In a continental typical region, where phenomena as rain, snow or fog are presented, the most important factor that produces losses of power is the dispersion of the light, though others exist as the presence of impurities (due to the air pollution) and the absorption. The attenuation due to the dispersion can be expressed as a function of the distance of the link, the wavelength and of the birefringence of the air with disturbances. This work describes the results obtained from the analysis of the propagation of the light in a contaminated atmosphere and of the availability of the link FSO, based on the measure of the ellipticity of a beam transmitted with circular polarization and of the calculation of the birefringence of the atmosphere, as a function of the distance of the link, the wavelength and the level of power received. It is presented a method to estimate the availability of a system FSO knowing the distance of the link and some physical characteristics of the atmosphere.
机译:诸如吸收,分散和湍流之类的多种大气现象会导致激光束衰减的巨大变化。吸收和湍流可以通过适当设计的系统自由空间光学系统(FSO)进行测量。在典型的大陆性地区,会出现雨,雪或雾的现象,产生功率损耗的最重要因素是光的散射,尽管其他一些原因是由于存在杂质(由于空气污染)和其他原因造成的。吸收。由色散引起的衰减可以表示为链路距离,波长和受干扰的空气的双折射的函数。这项工作基于对圆偏振透射光束的椭圆率的测量以及对双折射的计算,描述了从受污染的大气中的光传播和链路FSO可用性的分析中获得的结果。大气,取决于链路的距离,波长和接收到的功率的大小。提出了一种在知道链路距离和大气某些物理特征的情况下估计系统FSO可用性的方法。

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