English

Deep Outdoor Illumination Estimation

Computer Vision and Pattern Recognition 2018-04-13 v3

Abstract

We present a CNN-based technique to estimate high-dynamic range outdoor illumination from a single low dynamic range image. To train the CNN, we leverage a large dataset of outdoor panoramas. We fit a low-dimensional physically-based outdoor illumination model to the skies in these panoramas giving us a compact set of parameters (including sun position, atmospheric conditions, and camera parameters). We extract limited field-of-view images from the panoramas, and train a CNN with this large set of input image--output lighting parameter pairs. Given a test image, this network can be used to infer illumination parameters that can, in turn, be used to reconstruct an outdoor illumination environment map. We demonstrate that our approach allows the recovery of plausible illumination conditions and enables photorealistic virtual object insertion from a single image. An extensive evaluation on both the panorama dataset and captured HDR environment maps shows that our technique significantly outperforms previous solutions to this problem.

Keywords

Cite

@article{arxiv.1611.06403,
  title  = {Deep Outdoor Illumination Estimation},
  author = {Yannick Hold-Geoffroy and Kalyan Sunkavalli and Sunil Hadap and Emiliano Gambaretto and Jean-François Lalonde},
  journal= {arXiv preprint arXiv:1611.06403},
  year   = {2018}
}

Comments

CVPR'17 preprint, 8 pages + 2 pages of citations, 12 figures

R2 v1 2026-06-22T16:58:03.079Z