DocumentCode
3549179
Title
Modelling dynamic scenes by registering multi-view image sequences
Author
Pons, Jean-Philippe ; Keriven, Renaud ; Faugeras, Olivier
Author_Institution
Odyssee Lab., ENPC, Marne-la-Vallee, France
Volume
2
fYear
2005
fDate
20-25 June 2005
Firstpage
822
Abstract
In this paper, we present a new variational method for multi-view stereovision and non-rigid three-dimensional motion estimation from multiple video sequences. Our method minimizes the prediction error of the shape and motion estimates. Both problems then translate into a generic image registration task. The latter is entrusted to a similarity measure chosen depending on imaging conditions and scene properties. In particular, our method can be made robust to appearance changes due to non-Lambertian materials and illumination changes. It results in a simpler, more flexible, and more efficient implementation than existing deformable surface approaches. The computation time on large datasets does not exceed thirty minutes. Moreover, our method is compliant with a hardware implementation with graphics processor units. Our stereovision algorithm yields very good results on a variety of datasets including specularities and translucency. We have successfully tested our scene flow algorithm on a very challenging multi-view video sequence of a non-rigid scene.
Keywords
computational complexity; computer graphic equipment; image registration; image sequences; motion estimation; stereo image processing; graphics processor units; illumination changes; image registration; multiple video sequences; multiview stereovision; nonLambertian materials; nonrigid scene; nonrigid three-dimensional motion estimation; prediction error; Graphics; Hardware; Image registration; Image sequences; Layout; Lighting; Motion estimation; Robustness; Shape; Video sequences;
fLanguage
English
Publisher
ieee
Conference_Titel
Computer Vision and Pattern Recognition, 2005. CVPR 2005. IEEE Computer Society Conference on
ISSN
1063-6919
Print_ISBN
0-7695-2372-2
Type
conf
DOI
10.1109/CVPR.2005.227
Filename
1467528
Link To Document