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Combining thermal and visual imaging in spacecraft proximity operations

机译:将热成像和视觉成像结合在航天器的近距离操作中

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Advances in multiple spacecraft operations require precise determination of the relative kinematic state of the platforms involved. Such knowledge - above all in case of non-cooperative approaches - can be usefully attained by means of imaging. However, the extremely varying light conditions in the orbital environment do not allow for extended operations in the visible spectrum. The paper investigates the possible coupling of thermal imagery with visible one in order to have a continued relative tracking even during eclipse. The focus is on simple camera devices, suitable for mounting onboard microsatellites, and on the combined (visual and infrared) image processing and data fusion helped by the purposeful modeling of the spacecraft dynamics and bus signature.
机译:多种航天器操作的进步要求精确确定所涉及平台的相对运动状态。这些知识,尤其是在非合作方式的情况下,可以通过成像有效地获得。但是,在轨道环境中变化很大的光照条件不允许在可见光谱中进行扩展操作。本文研究了热图像与可见图像的可能耦合,以便即使在日食期间也具有连续的相对跟踪。重点是适合于安装在机载微卫星上的简单相机设备,以及通过对航天器动力学和总线签名进行有目的的建模而帮助进行的组合(可视和红外)图像处理和数据融合。

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