Sparse DNNs with Improved Adversarial Robustness

October 23, 2018 ยท Declared Dead ยท ๐Ÿ› Neural Information Processing Systems

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Authors Yiwen Guo, Chao Zhang, Changshui Zhang, Yurong Chen arXiv ID 1810.09619 Category cs.LG: Machine Learning Cross-listed cs.CR, cs.CV, cs.NE, stat.ML Citations 165 Venue Neural Information Processing Systems Last Checked 3 months ago
Abstract
Deep neural networks (DNNs) are computationally/memory-intensive and vulnerable to adversarial attacks, making them prohibitive in some real-world applications. By converting dense models into sparse ones, pruning appears to be a promising solution to reducing the computation/memory cost. This paper studies classification models, especially DNN-based ones, to demonstrate that there exists intrinsic relationships between their sparsity and adversarial robustness. Our analyses reveal, both theoretically and empirically, that nonlinear DNN-based classifiers behave differently under $l_2$ attacks from some linear ones. We further demonstrate that an appropriately higher model sparsity implies better robustness of nonlinear DNNs, whereas over-sparsified models can be more difficult to resist adversarial examples.
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