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A Closed-Form Solution to Non-rigid Shape and Motion Recovery

机译:封闭式溶液与非刚性形状和运动恢复

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Recovery of three dimensional (3D) shape and motion of non-static scenes from a monocular video sequence is important for applications like robot navigation and human computer interaction. If every point in the scene randomly moves, it is impossible to recover the non-rigid shapes. In practice, many non-rigid objects, e.g. the human face under various expressions, deform with certain structures. Their shapes can be regarded as a weighted combination of certain shape bases. Shape and motion recovery under such situations has attracted much interest. Previous work on this problem [6,4,13] utilized only orthonormality constraints on the camera rotations (rotation constraints). This paper proves that using only the rotation constraints results in ambiguous and invalid solutions. The ambiguity arises from the fact that the shape bases are not unique because their linear transformation is a new set of eligible bases. To eliminate the ambiguity, we propose a set of novel constraints, basis constraints, which uniquely determine the shape bases. We prove that, under the weak-perspective projection model, enforcing both the basis and the rotation constraints leads to a closed-form solution to the problem of non-rigid shape and motion recovery. The accuracy and robustness of our closed-form solution is evaluated quantitatively on synthetic data and qualitatively on real video sequences.
机译:恢复三维(3D)的形状和非静态场景的幂态序列的运动对于机器人导航和人机交互等应用非常重要。如果场景中的每个点随机移动,则无法恢复非刚性形状。在实践中,许多非刚性物体,例如,在各种表达下的人脸,用某些结构变形。它们的形状可以被视为某些形状基础的加权组合。在这种情况下的形状和运动恢复吸引了很多兴趣。以前的解决这个问题[6,4,13]仅在相机旋转上仅使用正交约束(旋转约束)。本文证明,仅使用旋转约束导致含糊不清和无效的解决方案。歧义是由于形状基础不是独特的事实,因为它们的线性变换是一组新的符合条件的基础。为了消除歧义,我们提出了一组新的约束,基础约束,唯一地确定形状基础。我们证明,在弱透视投影模型下,实施基础和旋转约束,导致闭合形式的解决方案与非刚性形状和运动恢复的问题。我们闭合溶液的精度和稳健性定量对合成数据进行评估,并在真实的视频序列上进行定性。

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