English

How to Train Neural Networks for Flare Removal

Image and Video Processing 2021-10-11 v4 Computer Vision and Pattern Recognition

Abstract

When a camera is pointed at a strong light source, the resulting photograph may contain lens flare artifacts. Flares appear in a wide variety of patterns (halos, streaks, color bleeding, haze, etc.) and this diversity in appearance makes flare removal challenging. Existing analytical solutions make strong assumptions about the artifact's geometry or brightness, and therefore only work well on a small subset of flares. Machine learning techniques have shown success in removing other types of artifacts, like reflections, but have not been widely applied to flare removal due to the lack of training data. To solve this problem, we explicitly model the optical causes of flare either empirically or using wave optics, and generate semi-synthetic pairs of flare-corrupted and clean images. This enables us to train neural networks to remove lens flare for the first time. Experiments show our data synthesis approach is critical for accurate flare removal, and that models trained with our technique generalize well to real lens flares across different scenes, lighting conditions, and cameras.

Keywords

Cite

@article{arxiv.2011.12485,
  title  = {How to Train Neural Networks for Flare Removal},
  author = {Yicheng Wu and Qiurui He and Tianfan Xue and Rahul Garg and Jiawen Chen and Ashok Veeraraghavan and Jonathan T. Barron},
  journal= {arXiv preprint arXiv:2011.12485},
  year   = {2021}
}

Comments

A new version paper is uploaded

R2 v1 2026-06-23T20:29:32.697Z