Title :
Uncalibrated perspective reconstruction of deformable structures
Author :
Xiao, Jing ; Kanade, Takeo
Author_Institution :
Epson Palo Alto Lab., CA
Abstract :
Reconstruction of 3D structures from uncalibrated image sequences has a wealthy history. Most work has been focused on rigid objects or static scenes. This paper studies the problem of perspective reconstruction of deformable structures such as dynamic scenes from an uncalibrated image sequence. The task requires decomposing the image measurements into a composition of three factors: 3D deformable structures, rigid rotations and translations, and intrinsic camera parameters. We develop a factorization algorithm that consists of two steps. In the first step we recover the protective depths iteratively using the sub-space constraints embedded in the image measurements of the deformable structures. In the second step, we scale the image measurements by the reconstructed projective depths. We then extend the linear closed-form solution for weak-perspective reconstruction by J. Xiao, et al. (2004) to factorize the scaled measurements and simultaneously reconstruct the deformable shapes and underlying shape model, the rigid motions, and the varying camera parameters such as focal lengths. The accuracy and robustness of the proposed method is demonstrated quantitatively on synthetic data and qualitatively on real image sequences
Keywords :
image reconstruction; image sequences; 3D deformable structure; factorization algorithm; focal length; image measurement; image sequence; intrinsic camera parameter; linear closed-form solution; reconstructed projective depth; rigid rotation; rigid translation; shape model; uncalibrated perspective reconstruction; Cameras; History; Image reconstruction; Image sequences; Iterative algorithms; Layout; Protection; Rotation measurement; Shape measurement; Subspace constraints;
Conference_Titel :
Computer Vision, 2005. ICCV 2005. Tenth IEEE International Conference on
Conference_Location :
Beijing
Print_ISBN :
0-7695-2334-X
DOI :
10.1109/ICCV.2005.241