EMPIR: Ensembles of Mixed Precision Deep Networks for Increased Robustness Against Adversarial Attacks
Sanchari Sen, Balaraman Ravindran, Anand Raghunathan
摘要
Ensuring robustness of Deep Neural Networks (DNNs) is crucial to their adoption in safety-critical applications such as self-driving cars, drones, and healthcare. Notably, DNNs are vulnerable to adversarial attacks in which small input perturbations can produce catastrophic misclassifications. In this work, we propose EMPIR, ensembles of quantized DNN models with different numerical precisions, as a new approach to increase robustness against adversarial attacks. EMPIR is based on the observation that quantized neural networks often demonstrate much higher robustness to adversarial attacks than full precision networks, but at the cost of a substantial loss in accuracy on the original (unperturbed) inputs. EMPIR overcomes this limitation to achieve the “best of both worlds”, i.e., the higher unperturbed accuracies of the full precision models combined with the higher robustness of the low precision models, by composing them in an ensemble. Further, as low precision DNN models have significantly lower computational and storage requirements than full precision models, EMPIR models only incur modest compute and memory overheads compared to a single full-precision model (<25% in our evaluations). We evaluate EMPIR across a suite of 3 different DNN tasks (MNIST, CIFAR-10 and ImageNet) and under 4 different adversarial attacks. Our results indicate that EMPIR boosts the average adversarial accuracies by 43.6%, 15.3% and 11.9% for the DNN models trained on the MNIST, CIFAR-10 and ImageNet datasets respectively, when compared to single full-precision models, without sacrificing accuracy on the unperturbed inputs.
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引用它的顶会 Paper14
- On Adaptive Attacks to Adversarial Example DefensesFlorian Tramèr, Nicholas Carlini, Wieland Brendel, Aleksander MadryNeurIPS 2020 · 被引用 1,026 次
- Increasing Confidence in Adversarial Robustness EvaluationsRoland S. Zimmermann, Wieland Brendel, Florian Tramèr, Nicholas CarliniNeurIPS 2022 · 被引用 25 次
- Error-Correcting Output Codes with Ensemble Diversity for Robust Learning in Neural NetworksYang Song, Qiyu Kang, Wee Peng TayAAAI 2021 · 被引用 23 次
- Improved Gradient-Based Adversarial Attacks for Quantized NetworksKartik Gupta, Thalaiyasingam AjanthanAAAI 2022 · 被引用 22 次
- Building Robust Ensembles via Margin BoostingDinghuai Zhang, Hongyang Zhang, Aaron C. Courville, Yoshua Bengio 等ICML 2022 · 被引用 18 次
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