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High-Accuracy Facial Depth Models derived from 3D Synthetic Data (2003.06211v2)

Published 13 Mar 2020 in eess.IV

Abstract: In this paper, we explore how synthetically generated 3D face models can be used to construct a high accuracy ground truth for depth. This allows us to train the Convolutional Neural Networks (CNN) to solve facial depth estimation problems. These models provide sophisticated controls over image variations including pose, illumination, facial expressions and camera position. 2D training samples can be rendered from these models, typically in RGB format, together with depth information. Using synthetic facial animations, a dynamic facial expression or facial action data can be rendered for a sequence of image frames together with ground truth depth and additional metadata such as head pose, light direction, etc. The synthetic data is used to train a CNN based facial depth estimation system which is validated on both synthetic and real images. Potential fields of application include 3D reconstruction, driver monitoring systems, robotic vision systems, and advanced scene understanding.

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Authors (5)
  1. Faisal Khan (8 papers)
  2. Shubhajit Basak (5 papers)
  3. Hossein Javidnia (10 papers)
  4. Michael Schukat (9 papers)
  5. Peter Corcoran (54 papers)
Citations (5)