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Earth-to-deep-space optical communications system with adaptive tilt and scintillation correction by use of near-Earth relay mirrors

机译:通过使用近地中继镜进行自适应倾斜和闪烁校正的地对深空光通信系统

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Performance of an Earth-to-deep-space optical telecommunications system is degraded by distortion of the beam as it propagates through the turbulent atmosphere. Conventional approaches to correcting distortions, based on natural or artificial guide stars, have practical difficulties or are not adequate for correction of distortions, which are important for Earth-to-deep-space optical links. A beam-relay approach that overcomes these difficulties is discussed. A downward-directed laser near an orbiting relay mirror provides a reference for atmospheric correction. Adaptive optics at the ground station compensate the uplink beam so that after it passes through the atmosphere uplink propagation effects are removed. The orbiting mirror then directs the corrected beam to the distant spacecraft. (C) 1998 Optical Society of America. [References: 12]
机译:当光束在湍流大气中传播时,光束的畸变会降低地球到深空空间光通信系统的性能。基于自然或人造导星的校正畸变的常规方法存在实际困难或不足以校正畸变,这对于地对深空光学链路很重要。讨论了克服这些困难的波束中继方法。环绕中继镜附近的向下定向激光器为大气校正提供了参考。地面站的自适应光学器件会补偿上行链路波束,以便在其通过大气层后消除上行链路的传播效应。然后,轨道镜将校正后的光束导向远处的航天器。 (C)1998年美国眼镜学会。 [参考:12]

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