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Correlation techniques as applied to pose estimation in space station docking

机译:空间站对接中应用于姿态估计的相关技术

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The telerobotic assembly of space-station components has become the method of choice for the International Space Station (155) because it offers a safe alternative to the more hazardous option of space walks. The disadvantage of telerobotic assembly is that it does not necessarily provide for direct arbitrary views of mating interfaces for the teleoperator. Unless cameras are present very close to the interface positions, such views must be generated graphically, based on calculated pose relationships derived from images. To assist in this photogrammetric pose estimation, circular targets, or spots of high contrast have been affixed on each connecting module at carefully surveyed positions. The appearance of a subset of spots must form a constellation of specific relative positions in the incoming image stream in order for the docking to proceed. Spot positions are expressed in terms of their apparent centroids in an image. The precision of centroid estimation is required to be as fine as 1/20th pixel, in some cases. This paper presents an approach to spot centroid estimation using cross correlation between spot images and synthetic spot models of precise centration. Techniques for obtaining sub-pixel accuracy and for shadow and lighting irregularity compensation are discussed.
机译:太空站组件的托管电枢组装已成为国际空间站的首选方法(155),因为它提供了安全替代空间散步的危险选择。透视障碍组件的缺点是它不一定提供用于漫游器的配合界面的直接任意视图。除非相机非常接近接口位置,否则必须基于从图像导出的计算出的姿势关系以图形方式生成这种视图。为了帮助在精心调查的位置上固定在每个连接模块上的循环测量估计,圆形目标或高对比度的斑点。斑点子集的外观必须在进入的图像流中形成特定相对位置的星座,以便为了对接进行对接。点位置以图像中的表观质心表达。在某些情况下,确定质心估计的精度是至1/20像素。本文介绍了使用精确厘定的现货图像与合成现货模型之间的互相关方法来发现质心估计。讨论了获得子像素精度和阴影和照明不规则性补偿的技术。

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