Robustness to Adversarial Perturbations in Learning from Incomplete Data
May 24, 2019 ยท Declared Dead ยท ๐ Neural Information Processing Systems
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Authors
Amir Najafi, Shin-ichi Maeda, Masanori Koyama, Takeru Miyato
arXiv ID
1905.13021
Category
stat.ML: Machine Learning (Stat)
Cross-listed
cs.IT,
cs.LG
Citations
136
Venue
Neural Information Processing Systems
Last Checked
3 months ago
Abstract
What is the role of unlabeled data in an inference problem, when the presumed underlying distribution is adversarially perturbed? To provide a concrete answer to this question, this paper unifies two major learning frameworks: Semi-Supervised Learning (SSL) and Distributionally Robust Learning (DRL). We develop a generalization theory for our framework based on a number of novel complexity measures, such as an adversarial extension of Rademacher complexity and its semi-supervised analogue. Moreover, our analysis is able to quantify the role of unlabeled data in the generalization under a more general condition compared to the existing theoretical works in SSL. Based on our framework, we also present a hybrid of DRL and EM algorithms that has a guaranteed convergence rate. When implemented with deep neural networks, our method shows a comparable performance to those of the state-of-the-art on a number of real-world benchmark datasets.
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