Title :
3D face model reconstruction based on stretching algorithm
Author :
Qinyan Zhang ; Li Shi
Author_Institution :
Autom. Sch., Beijing Univ. of Posts & Telecommun., Beijing, China
fDate :
Oct. 30 2012-Nov. 1 2012
Abstract :
In order to get realistic face model, face model reconstruction is a very important process, we need a way to map the two-dimensional face image coordinate to standard face model, so we propose a general face model reconstruction process based on stretching algorithm which including three stage. In the pose recovery stage, the pose recovery formulation is based on the non-linear least squares structure-from-motion algorithm. In the face partial point adjustment stage, which we define the stretching coefficient to adjust the feature point and non-feature point separately. After we make the face point in the right position for the model, from scattered data interpolation stage which based on the radial bases functions we can get a general function to calculate accurate 3D face model coordinates. Compared with other algorithm, the stretching algorithm can improve the accuracy of a three-dimensional map from the standard face model to a specific human face.
Keywords :
face recognition; feature extraction; image motion analysis; image reconstruction; interpolation; least squares approximations; radial basis function networks; 3D face model reconstruction process; face partial point adjustment stage; feature point; human face; nonfeature point; nonlinear least squares structure-from-motion algorithm; pose recovery formulation; radial bases functions; scattered data interpolation stage; stretching algorithm; three-dimensional map; two-dimensional face image; Adaptation models; Computational modeling; Face; Image reconstruction; Solid modeling; Standards; Three-dimensional displays; Non-linear least squares structure-from-motion; Partial adjustment; Stretching coefficient;
Conference_Titel :
Cloud Computing and Intelligent Systems (CCIS), 2012 IEEE 2nd International Conference on
Conference_Location :
Hangzhou
Print_ISBN :
978-1-4673-1855-6
DOI :
10.1109/CCIS.2012.6664395