English

Provable Reduction in Communication Rounds for Non-Smooth Convex Federated Learning

Machine Learning 2025-03-28 v1 Optimization and Control

Abstract

Multiple local steps are key to communication-efficient federated learning. However, theoretical guarantees for such algorithms, without data heterogeneity-bounding assumptions, have been lacking in general non-smooth convex problems. Leveraging projection-efficient optimization methods, we propose FedMLS, a federated learning algorithm with provable improvements from multiple local steps. FedMLS attains an ϵ\epsilon-suboptimal solution in O(1/ϵ)\mathcal{O}(1/\epsilon) communication rounds, requiring a total of O(1/ϵ2)\mathcal{O}(1/\epsilon^2) stochastic subgradient oracle calls.

Keywords

Cite

@article{arxiv.2503.21627,
  title  = {Provable Reduction in Communication Rounds for Non-Smooth Convex Federated Learning},
  author = {Karlo Palenzuela and Ali Dadras and Alp Yurtsever and Tommy Löfstedt},
  journal= {arXiv preprint arXiv:2503.21627},
  year   = {2025}
}