English

Tractable and Near-Optimal Adversarial Algorithms for Robust Estimation in Contaminated Gaussian Models

Statistics Theory 2022-08-09 v2 Machine Learning Statistics Theory

Abstract

Consider the problem of simultaneous estimation of location and variance matrix under Huber's contaminated Gaussian model. First, we study minimum ff-divergence estimation at the population level, corresponding to a generative adversarial method with a nonparametric discriminator and establish conditions on ff-divergences which lead to robust estimation, similarly to robustness of minimum distance estimation. More importantly, we develop tractable adversarial algorithms with simple spline discriminators, which can be implemented via nested optimization such that the discriminator parameters can be fully updated by maximizing a concave objective function given the current generator. The proposed methods are shown to achieve minimax optimal rates or near-optimal rates depending on the ff-divergence and the penalty used. This is the first time such near-optimal error rates are established for adversarial algorithms with linear discriminators under Huber's contamination model. We present simulation studies to demonstrate advantages of the proposed methods over classic robust estimators, pairwise methods, and a generative adversarial method with neural network discriminators.

Keywords

Cite

@article{arxiv.2112.12919,
  title  = {Tractable and Near-Optimal Adversarial Algorithms for Robust Estimation in Contaminated Gaussian Models},
  author = {Ziyue Wang and Zhiqiang Tan},
  journal= {arXiv preprint arXiv:2112.12919},
  year   = {2022}
}
R2 v1 2026-06-24T08:30:37.698Z