DocumentCode
3237516
Title
A two-stage approach to 3D scene structural analysis from a single two-dimensional image
Author
Liu, Y. ; Rodrigues, M.A.
Author_Institution
Dept. of Comput. Sci., Hull Univ., UK
fYear
1999
fDate
1999
Firstpage
196
Lastpage
200
Abstract
Structural analysis of a 3D scene from 2D image pixel positions is an important and unresolved issue in image processing and pattern recognition. Current algorithms for 3D structural analysis do not explicitly use geometrical properties of distance between feature points and angle information as constraints to calibrate transformation parameters. We propose a novel two-stage approach to analyse the structure of a 3D scene based on the explicit expressions of distance and angle measurement. In the first stage, we transform the 3D-2D problem into a linear problem and propose a robust algorithm based on the total least squares method to estimate the rotation matrix and translation vector. In the second stage, we propose a coarse-to-fine geometric algorithm to refine the estimation. The proposed two-stage approach provides the closed form solutions to structural parameters through the analysis of image correspondence vectors synthesised into a single coordinate frame. For a comparative study of performance, we also extended a well known 2D-2D epipolar geometry algorithm proposed by R.Y. Tsai and T.S. Huang (1984) to solve 3D-2D problems. Experimental results show that the proposed approach and geometric algorithms are in general more accurate, stable, and efficient than the extended Tsai and Xuang algorithm
Keywords
computational geometry; image processing; least squares approximations; matrix algebra; 2D image pixel positions; 2D-2D epipolar geometry algorithm; 3D scene structural analysis; 3D structural analysis; 3D-2D problem; angle information; angle measurement; closed form solutions; coarse-to-fine geometric algorithm; explicit expressions; feature points; geometric algorithms; geometrical properties; image correspondence vectors; image processing; linear problem; pattern recognition; robust algorithm; rotation matrix; single coordinate frame; single two-dimensional image; structural parameters; total least squares method; transformation parameters; translation vector; two-stage approach; Algorithm design and analysis; Goniometers; Image analysis; Image processing; Information analysis; Layout; Pattern analysis; Pattern recognition; Pixel; Robustness;
fLanguage
English
Publisher
ieee
Conference_Titel
Computational Intelligence and Multimedia Applications, 1999. ICCIMA '99. Proceedings. Third International Conference on
Conference_Location
New Delhi
Print_ISBN
0-7695-0300-4
Type
conf
DOI
10.1109/ICCIMA.1999.798528
Filename
798528
Link To Document