English

Linear Convergence Rate of a Class of Distributed Augmented Lagrangian Algorithms

Information Theory 2014-04-15 v2 math.IT

Abstract

We study distributed optimization where nodes cooperatively minimize the sum of their individual, locally known, convex costs fi(x)f_i(x)'s, xRdx \in {\mathbb R}^d is global. Distributed augmented Lagrangian (AL) methods have good empirical performance on several signal processing and learning applications, but there is limited understanding of their convergence rates and how it depends on the underlying network. This paper establishes globally linear (geometric) convergence rates of a class of deterministic and randomized distributed AL methods, when the fif_i's are twice continuously differentiable and have a bounded Hessian. We give explicit dependence of the convergence rates on the underlying network parameters. Simulations illustrate our analytical findings.

Keywords

Cite

@article{arxiv.1307.2482,
  title  = {Linear Convergence Rate of a Class of Distributed Augmented Lagrangian Algorithms},
  author = {Dusan Jakovetic and Jose M. F. Moura and Joao Xavier},
  journal= {arXiv preprint arXiv:1307.2482},
  year   = {2014}
}
R2 v1 2026-06-22T00:48:18.656Z