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Monocular Reconstruction of Neural Face Reflectance Fields (2008.10247v1)

Published 24 Aug 2020 in cs.CV, cs.GR, and cs.LG

Abstract: The reflectance field of a face describes the reflectance properties responsible for complex lighting effects including diffuse, specular, inter-reflection and self shadowing. Most existing methods for estimating the face reflectance from a monocular image assume faces to be diffuse with very few approaches adding a specular component. This still leaves out important perceptual aspects of reflectance as higher-order global illumination effects and self-shadowing are not modeled. We present a new neural representation for face reflectance where we can estimate all components of the reflectance responsible for the final appearance from a single monocular image. Instead of modeling each component of the reflectance separately using parametric models, our neural representation allows us to generate a basis set of faces in a geometric deformation-invariant space, parameterized by the input light direction, viewpoint and face geometry. We learn to reconstruct this reflectance field of a face just from a monocular image, which can be used to render the face from any viewpoint in any light condition. Our method is trained on a light-stage training dataset, which captures 300 people illuminated with 150 light conditions from 8 viewpoints. We show that our method outperforms existing monocular reflectance reconstruction methods, in terms of photorealism due to better capturing of physical premitives, such as sub-surface scattering, specularities, self-shadows and other higher-order effects.

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Authors (10)
  1. Ayush Tewari (43 papers)
  2. Tae-Hyun Oh (75 papers)
  3. Tim Weyrich (17 papers)
  4. Bernd Bickel (13 papers)
  5. Hans-Peter Seidel (68 papers)
  6. Hanspeter Pfister (131 papers)
  7. Wojciech Matusik (76 papers)
  8. Mohamed Elgharib (38 papers)
  9. Christian Theobalt (251 papers)
  10. Mallikarjun B R. (2 papers)
Citations (26)

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