Improving Robust Fariness via Balance Adversarial Training

Abstract

Adversarial training (AT) methods are effective against adversarial attacks, yet they introduce severe disparity of accuracy and robustness between different classes, known as the robust fairness problem. Previously proposed Fair Robust Learning (FRL) adaptively reweights different classes to improve fairness. However, the performance of the better-performed classes decreases, leading to a strong performance drop. In this paper, we observed two unfair phenomena during adversarial training: different difficulties in generating adversarial examples from each class (source-class fairness) and disparate target class tendencies when generating adversarial examples (target-class fairness). From the observations, we propose Balance Adversarial Training (BAT) to address the robust fairness problem. Regarding source-class fairness, we adjust the attack strength and difficulties of each class to generate samples near the decision boundary for easier and fairer model learning; considering target-class fairness, by introducing a uniform distribution constraint, we encourage the adversarial example generation process for each class with a fair tendency. Extensive experiments conducted on multiple datasets (CIFAR-10, CIFAR-100, and ImageNette) demonstrate that our BAT can significantly outperform other baselines in mitigating the robust fairness problem (+5-10\% on the worst class accuracy)(Our codes can be found at https://github.com/silvercherry/Improving-Robust-Fairness-via-Balance-Adversarial-Training).

Cite

Text

Sun et al. "Improving Robust Fariness via Balance Adversarial Training." AAAI Conference on Artificial Intelligence, 2023. doi:10.1609/AAAI.V37I12.26769

Markdown

[Sun et al. "Improving Robust Fariness via Balance Adversarial Training." AAAI Conference on Artificial Intelligence, 2023.](https://mlanthology.org/aaai/2023/sun2023aaai-improving/) doi:10.1609/AAAI.V37I12.26769

BibTeX

@inproceedings{sun2023aaai-improving,
  title     = {{Improving Robust Fariness via Balance Adversarial Training}},
  author    = {Sun, Chunyu and Xu, Chenye and Yao, Chengyuan and Liang, Siyuan and Wu, Yichao and Liang, Ding and Liu, Xianglong and Liu, Aishan},
  booktitle = {AAAI Conference on Artificial Intelligence},
  year      = {2023},
  pages     = {15161-15169},
  doi       = {10.1609/AAAI.V37I12.26769},
  url       = {https://mlanthology.org/aaai/2023/sun2023aaai-improving/}
}