Coupling-based Convergence Diagnostic and Stepsize Scheme for Stochastic Gradient Descent

Authors

  • Xiang Li University of Wisconsin - Madison
  • Qiaomin Xie University of Wisconsin - Madison

DOI:

https://doi.org/10.1609/aaai.v39i17.34035

Abstract

The convergence behavior of Stochastic Gradient Descent (SGD) crucially depends on the stepsize configuration. When using a constant stepsize, the SGD iterates form a Markov chain, enjoying fast convergence during the initial transient phase. However, when reaching stationarity, the iterates oscillate around the optimum without making further progress. In this paper, we study the convergence diagnostics for SGD with constant stepsize, aiming to develop an effective dynamic stepsize scheme. We propose a novel coupling-based convergence diagnostic procedure, which monitors the distance of two coupled SGD iterates for stationarity detection. Our diagnostic statistic is simple and is shown to track the transition from transience stationarity theoretically. We conduct extensive numerical experiments and compare our method against various existing approaches. Our proposed coupling-based stepsize scheme is observed to achieve superior performance across a diverse set of convex and non-convex problems. Moreover, our results demonstrate the robustness of our approach to a wide range of hyperparameters.

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Published

2025-04-11

How to Cite

Li, X., & Xie, Q. (2025). Coupling-based Convergence Diagnostic and Stepsize Scheme for Stochastic Gradient Descent. Proceedings of the AAAI Conference on Artificial Intelligence, 39(17), 18494–18501. https://doi.org/10.1609/aaai.v39i17.34035

Issue

Section

AAAI Technical Track on Machine Learning III