Learning Data Augmentation with Online Bilevel Optimization for Image Classification

Abstract

Data augmentation is a key practice in machine learning for improving generalization performance. However, finding the best data augmentation hyperparameters requires domain knowledge or a computationally demanding search. We address this issue by proposing an efficient approach to automatically train a network that learns an effective distribution of transformations to improve its generalization. Using bilevel optimization, we directly optimize the data augmentation parameters using a validation set. This framework can be used as a general solution to learn the optimal data augmentation jointly with an end task model like a classifier. Results show that our joint training method produces an image classification accuracy that is comparable to or better than carefully hand-crafted data augmentation. Yet, it does not need an expensive external validation loop on the data augmentation hyperparameters.

Cite

Text

Mounsaveng et al. "Learning Data Augmentation with Online Bilevel Optimization for Image Classification." Winter Conference on Applications of Computer Vision, 2021.

Markdown

[Mounsaveng et al. "Learning Data Augmentation with Online Bilevel Optimization for Image Classification." Winter Conference on Applications of Computer Vision, 2021.](https://mlanthology.org/wacv/2021/mounsaveng2021wacv-learning/)

BibTeX

@inproceedings{mounsaveng2021wacv-learning,
  title     = {{Learning Data Augmentation with Online Bilevel Optimization for Image Classification}},
  author    = {Mounsaveng, Saypraseuth and Laradji, Issam and Ayed, Ismail Ben and Vazquez, David and Pedersoli, Marco},
  booktitle = {Winter Conference on Applications of Computer Vision},
  year      = {2021},
  pages     = {1691-1700},
  url       = {https://mlanthology.org/wacv/2021/mounsaveng2021wacv-learning/}
}