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Feasibility of infrared Earth tracking for deep-space optical communications

机译:红外地球跟踪在深空光通信中的可行性

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摘要

Infrared (IR) Earth thermal tracking is a viable option for optical communications to distant planet and outer-planetary missions. However, blurring due to finite receiver aperture size distorts IR Earth images in the presence of Earth's nonuniform thermal emission and limits its applicability. We demonstrate a deconvolution algorithm that can overcome this limitation and reduce the error from blurring to a negligible level. The algorithm is applied successfully to Earth thermal images taken by the Mars Odyssey spacecraft. With the solution to this critical issue, IR Earth tracking is established as a viable means for distant planet and outer-planetary optical communications.
机译:红外(IR)地球热跟踪是与遥远的行星和外行星飞行任务进行光通信的可行选择。但是,由于存在有限的接收器孔径而导致的模糊会在存在地球不均匀的热辐射的情况下扭曲IR Earth图像,并限制了其适用性。我们演示了一种反卷积算法,该算法可以克服此局限性并将错误从模糊降低到可以忽略的水平。该算法已成功应用于火星奥德赛飞船拍摄的地球热图像。通过解决这一关键问题,红外地球跟踪被确立为用于遥远星球和外行星光通信的可行手段。

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