AAAI 2025technical11 citations

Towards Adversarially Robust Dataset Distillation by Curvature Regularization

Eric Xue, Yijiang Li, Haoyang Liu, Peiran Wang, Yifan Shen, Haohan Wang

Abstract

Dataset distillation (DD) allows datasets to be distilled to fractions of their original size while preserving the rich distributional information so that models trained on the distilled datasets can achieve a comparable accuracy while saving significant computational loads. Recent research in this area has been focusing on improving the accuracy of models trained on distilled datasets. In this paper, we aim to explore a new perspective of DD. We study how to embed adversarial robustness in distilled datasets, so that models trained on these datasets maintain the high accuracy and meanwhile acquire better adversarial robustness. We propose a new method that achieves this goal by incorporating curvature regularization into the distillation process with much less computational overhead than standard adversarial training. Extensive empirical experiments suggest that our method not only outperforms standard adversarial training on both accuracy and robustness with less computation overhead but is also capable of generating robust distilled datasets that can withstand various adversarial attacks.

BibTeX
@article{Xue_Li_Liu_Wang_Shen_Wang_2025, title={Towards Adversarially Robust Dataset Distillation by Curvature Regularization}, volume={39}, url={https://ojs.aaai.org/index.php/AAAI/article/view/32978}, DOI={10.1609/aaai.v39i9.32978}, abstractNote={Dataset distillation (DD) allows datasets to be distilled to fractions of their original size while preserving the rich distributional information so that models trained on the distilled datasets can achieve a comparable accuracy while saving significant computational loads. Recent research in this area has been focusing on improving the accuracy of models trained on distilled datasets. In this paper, we aim to explore a new perspective of DD. We study how to embed adversarial robustness in distilled datasets, so that models trained on these datasets maintain the high accuracy and meanwhile acquire better adversarial robustness. We propose a new method that achieves this goal by incorporating curvature regularization into the distillation process with much less computational overhead than standard adversarial training. Extensive empirical experiments suggest that our method not only outperforms standard adversarial training on both accuracy and robustness with less computation overhead but is also capable of generating robust distilled datasets that can withstand various adversarial attacks.}, number={9}, journal={Proceedings of the AAAI Conference on Artificial Intelligence}, author={Xue, Eric and Li, Yijiang and Liu, Haoyang and Wang, Peiran and Shen, Yifan and Wang, Haohan}, year={2025}, month={Apr.}, pages={9041-9049} }
Towards Adversarially Robust Dataset Distillation by Curvature Regularization · AAAI 2025