|
| This Article | ||
| ||
| Share | ||
| Bibliographic References | ||
| Add to: | ||
| | ||
| Search | ||
| ||
2001 IEEE Computer Society Conference on Computer Vision and Pattern Recognition (CVPR'01) - Volume 1
Decomposed Eigenface for Face Recognition under Various Lighting Conditions
Kauai, Hawaii
December 08-December 14
ISBN: 0-7695-1272-0
| ASCII Text | x | ||
| Takeshi Shakunaga, Kazuma Shigenari, "Decomposed Eigenface for Face Recognition under Various Lighting Conditions," 2012 IEEE Conference on Computer Vision and Pattern Recognition, vol. 1, pp. 864, 2001 IEEE Computer Society Conference on Computer Vision and Pattern Recognition (CVPR'01) - Volume 1, 2001. | |||
| BibTex | x | ||
| @article{ 10.1109/CVPR.2001.990575, author = {Takeshi Shakunaga and Kazuma Shigenari}, title = {Decomposed Eigenface for Face Recognition under Various Lighting Conditions}, journal ={2012 IEEE Conference on Computer Vision and Pattern Recognition}, volume = {1}, year = {2001}, issn = {1063-6919}, pages = {864}, doi = {http://doi.ieeecomputersociety.org/10.1109/CVPR.2001.990575}, publisher = {IEEE Computer Society}, address = {Los Alamitos, CA, USA}, } | |||
| RefWorks Procite/RefMan/Endnote | x | ||
| TY - CONF JO - 2012 IEEE Conference on Computer Vision and Pattern Recognition TI - Decomposed Eigenface for Face Recognition under Various Lighting Conditions SN - 1063-6919 SP EP A1 - Takeshi Shakunaga, A1 - Kazuma Shigenari, PY - 2001 KW - null VL - 1 JA - 2012 IEEE Conference on Computer Vision and Pattern Recognition ER - | |||
Face recognition under various lighting conditions is discussed to cover cases when too few images are available for registration. This paper proposes decomposition of an eigenface into two orthogonal eigenspaces for realizing robust face recognition under such conditions. The decomposed eigenfaces consisting of two eigenspaces are constructed for each person even if only one image is available. A universal eigenspace called the canonical space (CS) plays an important role in creating the eigenspaces by way of decomposition, where CS is constructed a priori by principal component analysis (PCA) over face images of many people under many lighting conditions. In the registration stage, an input face image is decomposed to a projection image in CS and the residual of the projection. Then two eigenspaces are created independently in CS and in the orthogonal complement CS\perp. Some refinements of the two eigenspaces are also discussed. By combining the two eigenspaces, we can easily realize face identification that is robust to illumination change, even when too few images are registered. Through experiments, we show the effectiveness of the decomposed eigenfaces as compared with conventional methods.
Citation:
Takeshi Shakunaga, Kazuma Shigenari, "Decomposed Eigenface for Face Recognition under Various Lighting Conditions," cvpr, vol. 1, pp.864, 2001 IEEE Computer Society Conference on Computer Vision and Pattern Recognition (CVPR'01) - Volume 1, 2001
Usage of this product signifies your acceptance of the Terms of Use.
