DocumentCode
2778506
Title
The view-cube: an efficient method of view planning for 3D modelling from range data
Author
Klein, Konrad ; Sequeira, Vitor
Author_Institution
Fraunhofer Inst. for Comput. Graphics, Darmstadt, Germany
fYear
2000
fDate
2000
Firstpage
186
Lastpage
191
Abstract
When aiming at the automated reconstruction of real world scenes from range images, one has to address the problem of planning the image acquisition. Although solutions for small objects in well defined environments are already available, the insufficient scalability of these approaches to large scenes and to a high number of degrees of freedom limits their applicability. In this paper we present a new planning algorithm with emphasis on practical usability in initially unknown, large indoor environments. Using a surface representation of seen and unseen parts of the environment, we propose an objective function based on the analysis of occlusions. In addition to previous approaches, we take into account both a quality criterion and the cost of the next acquisition. By optimising this objective function, the parameters of the next view are computed efficiently for a large search space with eight degrees of freedom (3D position, viewing direction, field of view, and resolution). Our technique exploits hardware-accelerated rendering (OpenGL) in order to perform the expensive visibility computation, which reduces the computation time of one planning step to a couple of minutes. Results are shown for two large indoor scenes-an artificial scene and a real world room-with numerous self occlusions
Keywords
image reconstruction; rendering (computer graphics); 3D modelling; OpenGL; automated reconstruction; image acquisition; range images; real world scenes; rendering; self occlusions; surface representation; view planning; view-cube; Computer graphics; Contracts; Costs; Humans; Image reconstruction; Indoor environments; Large-scale systems; Layout; Robotics and automation; Scalability;
fLanguage
English
Publisher
ieee
Conference_Titel
Applications of Computer Vision, 2000, Fifth IEEE Workshop on.
Conference_Location
Palm Springs, CA
Print_ISBN
0-7695-0813-8
Type
conf
DOI
10.1109/WACV.2000.895421
Filename
895421
Link To Document