Title :
Automatic 3D Face Detection, Normalization and Recognition
Author :
Mian, Ajmal ; Bennamoun, Mohammed ; Owens, Robyn
Author_Institution :
Sch. of Comput. Sci. & Software Eng., Univ. of Western Australia, Crawley, WA
Abstract :
A fully automatic 3D face recognition algorithm is presented. Several novelties are introduced to make the recognition robust to facial expressions and efficient. These novelties include: (1) Automatic 3D face detection by detecting the nose; (2) Automatic pose correction and normalization of the 3D face as well as its corresponding 2D face using the Hotelling transform; (3) A spherical face representation and its use as a rejection classifier to quickly reject a large number of candidate faces for efficient recognition; and (4) Robustness to facial expressions by automatically segmenting the face into expression sensitive and insensitive regions. Experiments performed on the FRGC Ver 2.0 dataset (9,500 2D/3D faces) show that our algorithm outperforms existing 3D recognition algorithms. We achieved verification rates of´ 99.47% and 94.09% at 0.001 FAR and identification rates of 98.03% and 89.25% for probes with neutral and non-neutral expression respectively.
Keywords :
face recognition; image classification; image representation; transforms; FRGC Ver 2.0 dataset; Hotelling transform; automatic 3D face detection; automatic 3D face normalization; automatic 3D face recognition; automatic pose correction; facial expressions; rejection classifier; spherical face representation; Face detection; Face recognition; Independent component analysis; Karhunen-Loeve transforms; Lighting; Nose; Principal component analysis; Robustness; Shape; Support vector machines;
Conference_Titel :
3D Data Processing, Visualization, and Transmission, Third International Symposium on
Conference_Location :
Chapel Hill, NC
Print_ISBN :
0-7695-2825-2
DOI :
10.1109/3DPVT.2006.32