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A method for identifying image data coming from two optical channels in a split field of view star camera

机译:一种识别来自分割视场星形摄像机中两个光学通道的图像数据的方法

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Split FOV (Field of View) star tracker was developed by Texas A&M University together with the University of Rome “La Sapienza”. A 50% splitter was used to combine light beams from two separate FOVs, while only a single objective lens and optical detector are used. In this way, double FOV configuration allows increased accuracy in attitude determination by taking advantage of the ability to examine two orthogonal FOVs simultaneously. There is a demand for optical tag due to each frame contained overlapping star images coming from separate FOVs. In this paper we propose a method for identifying two FOVs by tagging the images with different shaped diffraction patterns. We insert a circular diaphragm in the optical channel 1# and non-circular (elliptical or rectangular) in the channel 2#, so that images with distinctive features are produced at CCD photosensitive surface — circular Airy disc for the FOV-1# and elliptical contour (with side lobe or distortion) for FOV-2#. The effects of elliptical sampling window and the signal-to-noise ratio on the accuracy of the centroid estimate for star spots with a Gaussian intensity distribution were discussed theoretically. The optical tagging has one limitation. There is possibility for a star image tagged by non-circular contour, which is confused with smearing trail due to high angular velocity operation (e.g. greater than 1°/s).
机译:Split FOV(视场)恒星跟踪仪是由德克萨斯农工大学和罗马大学“ La Sapienza”共同开发的。使用50%的分束器将来自两个单独的FOV的光束合并,而仅使用单个物镜和光学检测器。这样,双重FOV配置通过利用同时检查两个正交FOV的能力,可以提高姿态确定的准确性。由于每个帧都包含来自不同FOV的重叠星形图像,因此需要光学标签。在本文中,我们提出了一种通过标记具有不同形状衍射图样的图像来识别两个视场的方法。我们在光通道1#中插入圆形光阑,在光通道2#中插入非圆形(椭圆或矩形),以便在CCD感光表面上产生具有独特特征的图像-FOV-1#和椭圆形的圆形Airy圆盘FOV-2#的轮廓(带有旁瓣或失真)。从理论上讨论了椭圆采样窗口和信噪比对高斯强度分布星点质心​​估计精度的影响。光学标签具有一个局限性。可能会出现由非圆形轮廓标记的星图,由于高角速度操作(例如,大于1°/ s),该星图会与拖尾轨迹混淆。

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