
TJ
Tao Jiang, Lin Xiao
· 1 min read
ResearcharXiv cs.AI
Second-Moment Stochastic Approximation Methods
arXiv:2609.36600v1 Announce Type: cross
Abstract: Classical stochastic approximation methods rely on estimators of the first moment (mean) of a random regression function. We study methods that employ estimators of both the first and the second moments, which include modern deep-learning optimizers such as Adam and Muon as special cases. We derive second-moment stochastic approximation methods through the lens of optimal preconditioning for solving matrix equations, and develop a two-stage framework for their convergence analysis. The first stage focuses on the analysis of conceptual (impractical) methods that rely on the exact first and second moments. In the second stage, we replace the exact moments with their respective estimators, and invoke Dvoretzky's theorem to show that the resulting practical methods converge almost surely to a neighborhood of the target solution. The size of the neighborhood depends on the biases and variances of the first- and second-moment estimators. We derive concrete bounds for Muon and a spectral variant of Adam that determine the radius of their neighborhood of convergence.
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This story was published by arXiv cs.AI and written by Tao Jiang, Lin Xiao. SyncAI.news shows a preview; the complete article is on the publisher's site.
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