English

On the improved conditions for some primal-dual algorithms

Optimization and Control 2022-01-04 v1 Numerical Analysis Numerical Analysis

Abstract

The convex minimization of f(x)+g(x)+h(Ax)f(\mathbf{x})+g(\mathbf{x})+h(\mathbf{A}\mathbf{x}) over Rn\mathbb{R}^n with differentiable ff and linear operator A:RnRm\mathbf{A}: \mathbb{R}^n\rightarrow \mathbb{R}^m, has been well-studied in the literature. By considering the primal-dual optimality of the problem, many algorithms are proposed from different perspectives such as monotone operator scheme and fixed point theory. In this paper, we start with a base algorithm to reveal the connection between several algorithms such as AFBA, PD3O and Chambolle-Pock. Then, we prove its convergence under a relaxed assumption associated with the linear operator and characterize the general constraint on primal and dual stepsizes. The result improves the upper bound of stepsizes of AFBA and indicates that Chambolle-Pock, as the special case of the base algorithm when f=0f=0, can take the stepsize of the dual iteration up to 4/34/3 of the previously proven one.

Keywords

Cite

@article{arxiv.2201.00139,
  title  = {On the improved conditions for some primal-dual algorithms},
  author = {Yao Li and Ming Yan},
  journal= {arXiv preprint arXiv:2201.00139},
  year   = {2022}
}
R2 v1 2026-06-24T08:37:26.539Z