Towards deep learning models resistant to adversarial attacks
Author(s)
Madry, A; Makelov, A; Schmidt, L; Tsipras, D; Vladu, A
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© Learning Representations, ICLR 2018 - Conference Track Proceedings.All right reserved. Recent work has demonstrated that neural networks are vulnerable to adversarial examples, i.e., inputs that are almost indistinguishable from natural data and yet classified incorrectly by the network. To address this problem, we study the adversarial robustness of neural networks through the lens of robust optimization. This approach provides us with a broad and unifying view on much prior work on this topic. Its principled nature also enables us to identify methods for both training and attacking neural networks that are reliable and, in a certain sense, universal. In particular, they specify a concrete security guarantee that would protect against a well-defined class of adversaries. These methods let us train networks with significantly improved resistance to a wide range of adversarial attacks. They also suggest robustness against a first-order adversary as a natural security guarantee. We believe that robustness against such well-defined classes of adversaries is an important stepping stone towards fully resistant deep learning models.
Date issued
2018Department
Massachusetts Institute of Technology. Department of Electrical Engineering and Computer Science; Massachusetts Institute of Technology. Computer Science and Artificial Intelligence LaboratoryJournal
6th International Conference on Learning Representations, ICLR 2018 - Conference Track Proceedings
Citation
Madry, A, Makelov, A, Schmidt, L, Tsipras, D and Vladu, A. 2018. "Towards deep learning models resistant to adversarial attacks." 6th International Conference on Learning Representations, ICLR 2018 - Conference Track Proceedings.
Version: Author's final manuscript