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Adaptive optics for high data rate satellite to ground laser link

机译:高数据速率卫星到地面激光链路的自适应光学器件

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To match the increasing need for high data rate between high altitude platforms and ground free space optics links are investigated. Part of the growing interest is motivated by the possibility to reap the benefits of the technological maturity of the fibered components. This requires the injection of the received wave into a single mode fiber. To reduce injection losses on the ground terminal the use of adaptive optics (AO) is investigated. The AO system must work for a wide variety of turbulence conditions: by daytime and nighttime, at potentially very low elevations for LEO satellites, with localizations of optical ground stations that could be unfavorable regarding atmospheric turbulence. Contrary to astronomy where the quantity optimized is the average Strehl ratio, for free space communications statistical and temporal characteristics of the injection losses must be taken into account. The consequences of a partial correction are investigated here by numerical simulation for both GEO and LEO to ground links.
机译:为了满足高海拔平台与地面自由空间光学链路之间对高数据速率不断增长的需求。越来越多的兴趣是由获得纤维组件技术成熟的好处所激发的。这需要将接收到的波注入单模光纤。为了减少接地端子上的注入损耗,研究了自适应光学器件(AO)的使用。 AO系统必须能在各种湍流条件下工作:白天和晚上,LEO卫星的仰角可能非常低,并且光学地面站的位置可能对大气湍流不利。与天文学相反,优化数量是平均斯特列尔比,对于自由空间通信,必须考虑注入损耗的统计和时间特性。这里通过对GEO和LEO到地面链路的数值模拟研究了部分校正的结果。

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