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在1公里自由空间传播实验中对超前角预补偿的验证。

Validation of pre-compensation under point-ahead-angle in a 1 km free-space propagation experiment.

作者信息

Brady Aoife, Rössler Conrad, Leonhard Nina, Gier Marlies, Böttner Paul, Eberhardt Ramona, Tünnermann Andreas, Reinlein Claudia

出版信息

Opt Express. 2019 Jun 24;27(13):17840-17850. doi: 10.1364/OE.27.017840.

Abstract

Adaptive optical pre-compensation is seen as crucial for free-space laser communication in order to overcome the influence of atmospheric turbulence, particularly with respect to Earth-to-GEO feederlinks. This paper presents an experimental investigation into adaptive optical pre-compensation under large point-ahead-angles. We detail the design and realization of a free-space laser communication experiment over a 1.0 km horizontal path using a divergent beacon beam and a focussed signal beam, propagating in opposite directions. We describe the design and development of our experimental setup and measurement campaign using real turbulence. The median isoplanatic angle was calculated to be 0.16 mrad, while an increase in the received optical power through pre-compensation could be demonstrated for point-ahead-angles in the range of 0.13 mrad to 0.27 mrad.

摘要

自适应光学预补偿被视为自由空间激光通信的关键,以便克服大气湍流的影响,特别是对于地球到地球静止轨道(GEO)的馈线链路。本文介绍了在大前置角下对自适应光学预补偿的实验研究。我们详细阐述了在1.0公里水平路径上使用发散信标光束和聚焦信号光束沿相反方向传播的自由空间激光通信实验的设计与实现。我们描述了使用实际湍流的实验装置和测量活动的设计与开发。计算得出的等晕角中值为0.16毫弧度,同时对于0.

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