DocumentCode
547520
Title
Stereo Reconstruction of Building Interiors with a Vertical Structure Prior
Author
Zeisl, Bernhard ; Zach, Christopher ; Pollefeys, Marc
Author_Institution
Comput. Vision & Geometry Group, ETH Zurich, Zurich, Switzerland
fYear
2011
fDate
16-19 May 2011
Firstpage
366
Lastpage
373
Abstract
Image-based computation of a 3D map for an indoor environment is a very challenging task, but also a useful step for vision-based navigation and path planning for autonomous systems, and for efficient visualization of interior spaces. Since computational stereo is a highly ill-posed problem for the typically weakly textured, specular, and even sometimes transparent indoor environments, one has to incorporate very strong prior assumptions on the observed geometry. A natural assumption for building interiors is that open space is bounded (i) by parallel ground and ceiling planes, and (ii) by vertical (not necessarily orthogonal) wall elements. We employ this assumption as a strong prior in dense depth estimation from stereo images. The additional assumption of smooth vertical elements allows our approach to fill in plausible extensions of e.g. walls in case of (non-vertical) occlusions. It is also possible to explicitly detect non-vertical regions in the images, and to revert to more general stereo methods only in those areas. We demonstrate our method on several challenging stereo images of office environments.
Keywords
image reconstruction; path planning; robot vision; stereo image processing; building interior reconstruction; ceiling plane; computational stereo; image-based computation; parallel ground plane; path planning; robot navigation; stereo reconstruction; vertical structure prior; vertical wall element; vision-based navigation; Cameras; Computational modeling; Dynamic programming; Hafnium; Image reconstruction; Indoor environments; Three dimensional displays; 3D reconstruction; computational stereo; dynamic programming;
fLanguage
English
Publisher
ieee
Conference_Titel
3D Imaging, Modeling, Processing, Visualization and Transmission (3DIMPVT), 2011 International Conference on
Conference_Location
Hangzhou
Print_ISBN
978-1-61284-429-9
Electronic_ISBN
978-0-7695-4369-7
Type
conf
DOI
10.1109/3DIMPVT.2011.53
Filename
5955383
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