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Reconstruction from Projections Using Grassmann Tensors

机译:使用Grassmann张量从投影重建

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In this paper a general procedure is given for reconstruction of a set of feature points in an arbitrary dimensional projective space from their projections into lower dimensional spaces. This extends the methods applied in the well-studied problem of reconstruction of scene points in P~3 given their projections in a set of images. In this case, the bifocal, trifocal and quadrifocal tensors are used to carry out this computation. It is shown that similar methods will apply in a much more general context, and hence may be applied to projections from P~n to P~m, which have been used in the analysis of dynamic scenes, and in radial distortion correction. For sufficiently many generic projections, reconstruction of the scene is shown to be unique up to projectivity, except in the case of projections onto one-dimensional image spaces (lines), in which case there are two solutions. Projections from P~n to P~2 have been considered by Wolf and Shashua (in International Journal of Computer Vision 48(1): 53-67, 2002), where they were applied to several different problems in dynamic scene analysis. They analyzed these projections using tensors, but no general way of defining such tensors, and computing the projections was given. This paper settles the general problem, showing that tensor definition and retrieval of the projections is always possible
机译:在本文中,给出了在任意维投影空间中将一组特征点从其投影转换为低维空间的通用过程。给定了它们在一组图像中的投影,这扩展了应用于P〜3中场景点重构的深入研究的方法。在这种情况下,使用双焦点,三焦点和四焦点张量执行此计算。结果表明,类似的方法将在更广泛的上下文中应用,因此可以应用于从Pn到Pm的投影,这些投影已用于动态场景分析和径向失真校正。对于足够多的通用投影,场景的重建显示出在投影性方面是唯一的,除了投影到一维图像空间(线)上的情况外,在这种情况下有两种解决方案。 Wolf和Shashua已经考虑了从P〜n到P〜2的投影(国际计算机视觉杂志48(1):53-67,2002年),其中将它们应用于动态场景分析中的几个不同问题。他们使用张量分析了这些投影,但没有给出定义此类张量并计算投影的一般方法。本文解决了一般问题,表明张量定义和投影的检索始终是可能的

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