PureGen: Universal Data Purification for Train-Time Poison Defense via Generative Model Dynamics
May 28, 2024 ยท Declared Dead ยท ๐ Neural Information Processing Systems
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Authors
Sunay Bhat, Jeffrey Jiang, Omead Pooladzandi, Alexander Branch, Gregory Pottie
arXiv ID
2405.18627
Category
cs.LG: Machine Learning
Cross-listed
cs.AI,
cs.CR
Citations
4
Venue
Neural Information Processing Systems
Last Checked
4 months ago
Abstract
Train-time data poisoning attacks threaten machine learning models by introducing adversarial examples during training, leading to misclassification. Current defense methods often reduce generalization performance, are attack-specific, and impose significant training overhead. To address this, we introduce a set of universal data purification methods using a stochastic transform, $ฮจ(x)$, realized via iterative Langevin dynamics of Energy-Based Models (EBMs), Denoising Diffusion Probabilistic Models (DDPMs), or both. These approaches purify poisoned data with minimal impact on classifier generalization. Our specially trained EBMs and DDPMs provide state-of-the-art defense against various attacks (including Narcissus, Bullseye Polytope, Gradient Matching) on CIFAR-10, Tiny-ImageNet, and CINIC-10, without needing attack or classifier-specific information. We discuss performance trade-offs and show that our methods remain highly effective even with poisoned or distributionally shifted generative model training data.
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