DocumentCode
2371138
Title
Quantitative Analysis of 3D Face Reconstruction using Annealing based Approach
Author
Amin, S. Hassan ; Gillies, Duncan
Author_Institution
Imperial Coll., London
fYear
2007
fDate
27-29 Sept. 2007
Firstpage
1
Lastpage
6
Abstract
3D shape reconstruction from 2D images is an inverse problem, and is therefore mathematically ill-posed. In most of the previous research no quantitative measures of quality of 3D reconstruction have been used. Instead visual and indirect measures such as recognition results are used as the measure of quality of 3D reconstruction. This paper presents an analysis by synthesis method for solving 3D face reconstruction problems using anatomical landmarks and intensity from 2D frontal face images. For evaluating the quality of 3D shape reconstruction two objective measures 3D shape error and 2D shape error are proposed. In order to improve the quality of 3D shape reconstruction a number of steps are proposed. Firstly, the 3D shape model is constructed by establishing a dense correspondence using rigid and non rigid surface registration. Secondly shape estimation is made robust by incorporating simulated annealing into the multidimensional amoeba optimization used for recovering shape parameters.
Keywords
face recognition; image reconstruction; inverse problems; simulated annealing; 2D shape error measurement; 3D face recognition; 3D face reconstruction; 3D shape error measurement; inverse problem; multidimensional amoeba optimization; quantitative analysis; simulated annealing; Annealing; Biometrics; Face recognition; Image analysis; Image edge detection; Image reconstruction; Lighting; Robustness; Shape measurement; Surface reconstruction;
fLanguage
English
Publisher
ieee
Conference_Titel
Biometrics: Theory, Applications, and Systems, 2007. BTAS 2007. First IEEE International Conference on
Conference_Location
Crystal City, VA
Print_ISBN
978-1-4244-1597-7
Electronic_ISBN
978-1-4244-1597-7
Type
conf
DOI
10.1109/BTAS.2007.4401926
Filename
4401926
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