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Integrating Motion, Illumination, and Structure in Video Sequences with Applications in Illumination-Invariant Tracking

机译:整合视频序列中的运动,照明和结构及其在照明不变跟踪中的应用

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In this paper, we present a theory for combining the effects of motion, illumination, 3D structure, albedo, and camera parameters in a sequence of images obtained by a perspective camera. We show that the set of all Lambertian reflectance functions of a moving object, at any position, illuminated by arbitrarily distant light sources, lies "closeA- to a bilinear subspace consisting of nine illumination variables and six motion variables. This result implies that, given an arbitrary video sequence, it is possible to recover the 3D structure, motion, and illumination conditions simultaneously using the bilinear subspace formulation. The derivation builds upon existing work on linear subspace representations of reflectance by generalizing it to moving objects. Lighting can change slowly or suddenly, locally or globally, and can originate from a combination of point and extended sources. We experimentally compare the results of our theory with ground truth data and also provide results on real data by using video sequences of a 3D face and the entire human body with various combinations of motion and illumination directions. We also show results of our theory in estimating 3D motion and illumination model parameters from a video sequence.
机译:在本文中,我们提出了一种将运动,照明,3D结构,反照率和相机参数的影响组合在由透视相机获得的图像序列中的理论。我们表明,在任意位置,由任意距离的光源照亮的运动对象的所有朗伯反射函数集都位​​于“ closeA-到由9个照度变量和6个运动变量组成的双线性子空间中。该结果表明,给定任意视频序列都可以使用双线性子空间公式同时恢复3D结构,运动和照明条件,该推导基于对反射率的线性子空间表示形式的现有工作,可以将其推广到运动对象,照明可以缓慢变化或突然,局部或全局,并且可能源自点和扩展源的组合,我们通过实验将我们的理论结果与地面真实数据进行比较,并通过使用3D人脸和整个人体的视频序列在真实数据上提供结果结合运动和照明方向的各种组合我们还展示了估计3的理论结果来自视频序列的D运动和照明模型参数。

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