English

Alternating Projections and Douglas-Rachford for Sparse Affine Feasibility

Optimization and Control 2018-02-07 v2 Numerical Analysis

Abstract

The problem of finding a vector with the fewest nonzero elements that satisfies an underdetermined system of linear equations is an NP-complete problem that is typically solved numerically via convex heuristics or nicely-behaved nonconvex relaxations. In this work we consider elementary methods based on projections for solving a sparse feasibility problem without employing convex heuristics. In a recent paper Bauschke, Luke, Phan and Wang (2014) showed that, locally, the fundamental method of alternating projections must converge linearly to a solution to the sparse feasibility problem with an affine constraint. In this paper we apply different analytical tools that allow us to show global linear convergence of alternating projections under familiar constraint qualifications. These analytical tools can also be applied to other algorithms. This is demonstrated with the prominent Douglas-Rachford algorithm where we establish local linear convergence of this method applied to the sparse affine feasibility problem.

Keywords

Cite

@article{arxiv.1307.2009,
  title  = {Alternating Projections and Douglas-Rachford for Sparse Affine Feasibility},
  author = {Robert Hesse and D. Russell Luke and Patrick Neumann},
  journal= {arXiv preprint arXiv:1307.2009},
  year   = {2018}
}

Comments

29 pages, 2 figures, 37 references. Much expanded version from last submission. Title changed to reflect new developments