DocumentCode
2438214
Title
Surface Reconstruction Based on Computer Stereo Vision Using Structured Light Projection
Author
Li, Lijun ; Ke, Yingjie ; Jiang, Kaiyong
Author_Institution
Mold & Die Technol. & Res. Center, HuaQiao Univ., Quanzhou, China
Volume
2
fYear
2009
fDate
26-27 Aug. 2009
Firstpage
451
Lastpage
454
Abstract
Object reconstruction is one of the most important topics in computer vision due to its wide field of application. Reverse engineering has an increasing need for reconstruction of stereo parts. A system for reconstruction three dimensional (3-D) object\´s surface from its 2-D views using a coded structured light combining with the epipolar geometry that exists between the stereo image pair is presented. A set of multiple gray coded patterns and a set of sine wave patterns are combined to form a single "gray code composite pattern" and a single "phase shift composite pattern" respectively. These two structured light patterns are projected onto the target object through a DLP projector and the distorted strips patterns produced by its surface are captured by two CCD cameras. By demodulating the distorted patterns and adding epipolar constraints the match points between the image pair are found out and then the target object\´s 3-D point\´s coordinates on the surface are obtained. The system shows excellent linearity and the results shows good resolution.
Keywords
CCD image sensors; computer vision; image reconstruction; image resolution; reverse engineering; stereo image processing; surface reconstruction; 3D object surface reconstruction; CCD cameras; DLP projector; computer stereo vision; epipolar geometry; gray code composite pattern; image resolution; phase shift composite pattern; reverse engineering; structured light projection; three dimensional object surface reconstruction; Application software; Computer vision; Geometry; Image reconstruction; Reflective binary codes; Reverse engineering; Stereo image processing; Stereo vision; Strips; Surface reconstruction; computer stereo vision; epipolar geometry; reverse engineering; structured light; surface reconstruction;
fLanguage
English
Publisher
ieee
Conference_Titel
Intelligent Human-Machine Systems and Cybernetics, 2009. IHMSC '09. International Conference on
Conference_Location
Hangzhou, Zhejiang
Print_ISBN
978-0-7695-3752-8
Type
conf
DOI
10.1109/IHMSC.2009.235
Filename
5335946
Link To Document