• DocumentCode
    3777192
  • Title

    Efficient face frontalization in unconstrained images

  • Author

    Mallikarjun B R;Visesh Chari;C.V. Jawahar

  • Author_Institution
    CVIT, IIIT Hyderabad, India
  • fYear
    2015
  • Firstpage
    1
  • Lastpage
    4
  • Abstract
    Face frontalization is the process of synthesizing a frontal view of a face, given its non-frontal view. Frontalization is used in intelligent photo editing tools and also aids in improving the accuracy of face recognition systems. For example, in the case of photo editing, faces of persons in a group photo can be corrected to look into the camera, if they are looking elsewhere. Similarly, even though recent methods in face recognition claim accuracy which surpasses that of humans in some cases, performance of recognition systems degrade when profile view of faces are given as input. One way to address this issue is to synthesize frontal views of faces before recognition. We propose a simple and efficient method to address the face frontalization problem. Our method leverages the fact that faces in general have a definite structure and can be represented in a low dimensional subspace. We employ an exemplar based approach to find the transformation that relates the profile view to the frontal view, and use it to generate realistic frontalizations. Our method does not involve estimating 3D model of the face, which is a common approach in previous work in this area. This leads to an efficient solution, since we avoid the complexity of adding one more dimension to the problem. Our method also retains the structural information of the individual as compared to that of a recent method [4], which assumes a generic 3D model for synthesis. We show impressive qualitative and quantitative results in comparison to the state-of-the-art in this field.
  • Keywords
    "Face","Face recognition","Databases","Three-dimensional displays","Feature extraction","Solid modeling","Training"
  • Publisher
    ieee
  • Conference_Titel
    Computer Vision, Pattern Recognition, Image Processing and Graphics (NCVPRIPG), 2015 Fifth National Conference on
  • Type

    conf

  • DOI
    10.1109/NCVPRIPG.2015.7490057
  • Filename
    7490057