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Star Tracker Based ATP System Conceptual Design and Pointing Accuracy Estimation

机译:基于Star Tracker的ATP系统概念设计与指向精度估计。

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摘要

A star tracker based beaconless (a.k.a. non-cooperative beacon) acquisition, tracking and pointing concept for precisely pointing an optical communication beam is presented as an innovative approach to extend the range of high bandwidth (> 100 Mbps) deep space optical communication links throughout the solar system and to remove the need for a ground based high power laser as a beacon source. The basic approach for executing the ATP functions involves the use of stars as the reference sources from which the attitude knowledge is obtained and combined with high bandwidth gyroscopes for propagating the pointing knowledge to the beam pointing mechanism. Details of the conceptual design are presented including selection of an orthogonal telescope configuration and the introduction of an optical metering scheme to reduce misalignment error. Also, estimates are presented that demonstrate that aiming of the communications beam to the Earth based receive terminal can be achieved with a total system pointing accuracy of better than 850 nanoradians (3 sigma) from anywhere in the solar system.
机译:作为一种创新方法,提出了一种基于星型跟踪器的无信标(又称为非合作信标)获取,跟踪和指向概念,以精确指向光通信光束,从而将高带宽(> 100 Mbps)深空光通信链路的范围扩展到整个太阳能系统,不再需要地面高功率激光作为信标源。执行ATP功能的基本方法包括使用星星作为参考源,从中获取姿态知识,并与高带宽陀螺仪结合使用,以将指向知识传播到波束指向机制。介绍了概念设计的细节,包括选择正交望远镜配置以及引入光学测光方案以减少未对准误差。另外,提出了一些估计,这些估计表明,可以使整个系统的指向精确度优于太阳系中任何地方的850纳弧度(3 sigma),从而实现将通信束对准基于地球的接收终端。

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