Title :
RANSAC-Assisted Display Model Reconstruction for Projective Display
Author :
Quirk, Patrick ; Johnson, Tyler ; Skarbez, Rick ; Towles, Herman ; Gyarfas, Florian ; Fuchs, Henry
Author_Institution :
University of North Carolina at Chapel Hill
Abstract :
Using projectors to create perspectively correct imagery on arbitrary display surfaces requires geometric knowledge of the display surface shape, the projector calibration, and the user’s position in a common coordinate system. Prior solutions have most commonly modeled the display surface as a tessellated mesh derived from the 3D-point cloud acquired during system calibration. In this paper we describe a method for functional reconstruction of the display surface, which takes advantage of the knowledge that most interior display spaces (e.g. walls, floors, ceilings, building columns) are piecewise planar. Using a RANSAC algorithm to recursively fit planes to a 3D-point cloud sampling of the surface, followed by a conversion of the plane definitions into simple planar polygon descriptions, we are able to create a geometric model which is less complex than a dense tessellated mesh and offers a simple method for accurately modeling the corners of rooms. Planar models also eliminate subtle, but irritating, texture distortion often seen in tessellated mesh approximations to planar surfaces.
Keywords :
3Dpoint cloud simplification; RANSAC plane fitting; functional reconstruction; projective display; surface fitting; Calibration; Clouds; Displays; Floors; Image reconstruction; Sampling methods; Solid modeling; Surface fitting; Surface reconstruction; Surface texture; 3Dpoint cloud simplification; RANSAC plane fitting; functional reconstruction; projective display; surface fitting;
Conference_Titel :
Virtual Reality Conference, 2006
Print_ISBN :
1-4244-0224-7
DOI :
10.1109/VR.2006.115