DocumentCode
579854
Title
Simple, Accurate, and Robust Projector-Camera Calibration
Author
Moreno, Daniel ; Taubin, Gabriel
Author_Institution
Sch. of Eng., Brown Univ., Providence, RI, USA
fYear
2012
fDate
13-15 Oct. 2012
Firstpage
464
Lastpage
471
Abstract
Structured-light systems are simple and effective tools to acquire 3D models. Built with off-the-shelf components, a data projector and a camera, they are easy to deploy and compare in precision with expensive laser scanners. But such a high precision is only possible if camera and projector are both accurately calibrated. Robust calibration methods are well established for cameras but, while cameras and projectors can both be described with the same mathematical model, it is not clear how to adapt these methods to projectors. In consequence, many of the proposed projector calibration techniques make use of a simplified model, neglecting lens distortion, resulting in loss of precision. In this paper, we present a novel method to estimate the image coordinates of 3D points in the projector image plane. The method relies on an uncalibrated camera and makes use of local homographies to reach sub-pixel precision. As a result, any camera model can be used to describe the projector, including the extended pinhole model with radial and tangential distortion coefficients, or even those with more complex lens distortion models.
Keywords
calibration; cameras; image processing; lenses; optical distortion; optical projectors; optical scanners; solid modelling; 3D models; 3D points; camera model; data projector; extended pinhole model; homography; image coordinates; laser scanners; lens distortion models; mathematical model; off-the-shelf components; precision loss; projector calibration techniques; projector image plane; projector-camera calibration; radial distortion coefficients; robust calibration methods; simplified model; structured-light systems; subpixel precision; tangential distortion coefficients; uncalibrated camera; Calibration; Cameras; Image color analysis; Image resolution; Reflective binary codes; Robustness; Software; calibration; camera; local homography; projector; structured-light;
fLanguage
English
Publisher
ieee
Conference_Titel
3D Imaging, Modeling, Processing, Visualization and Transmission (3DIMPVT), 2012 Second International Conference on
Conference_Location
Zurich
Print_ISBN
978-1-4673-4470-8
Type
conf
DOI
10.1109/3DIMPVT.2012.77
Filename
6375029
Link To Document