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ICML2026Top-tier venue

Stability and Generalization of Nonconvex Optimization with Heavy-Tailed Noise

Hongxu Chen, Ke Wei, Xiaoming Yuan, Luo Luo

2026Year
1Top-tier citations

Abstract

The empirical evidence indicates that stochastic optimization with heavy-tailed gradient noise is more appropriate to characterize the training of machine learning models than that with standard bounded gradient variance noise. Most existing works on this phenomenon focus on the convergence of optimization errors, while the analysis for generalization bounds under the heavy-tailed gradient noise remains limited. In this paper, we develop a general framework for establishing generalization bounds under heavy-tailed noise. Specifically, we introduce a truncation argument to achieve the generalization error bound based on the algorithmic stability under the assumption of bounded ppth centered moment with p∈(1,2]p\in(1,2]. Building on this framework, we further provide the stability and generalization analysis for several popular stochastic algorithms under heavy-tailed noise, including clipped and normalized stochastic gradient descent, as well as their mini-batch and momentum variants.

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