English

The condition number of a function relative to a set

Optimization and Control 2020-04-21 v4

Abstract

The condition number of a differentiable convex function, namely the ratio of its smoothness to strong convexity constants, is closely tied to fundamental properties of the function. In particular, the condition number of a quadratic convex function is the square of the aspect ratio of a canonical ellipsoid associated to the function. Furthermore, the condition number of a function bounds the linear rate of convergence of the gradient descent algorithm for unconstrained convex minimization. We propose a condition number of a differentiable convex function relative to a reference convex set and distance function pair. This relative condition number is defined as the ratio of a relative smoothness to a relative strong convexity constants. We show that the relative condition number extends the main properties of the traditional condition number both in terms of its geometric insight and in terms of its role in characterizing the linear convergence of first-order methods for constrained convex minimization. When the reference set XX is a convex cone or a polyhedron and the function ff is of the form f=gAf = g\circ A, we provide characterizations of and bounds on the condition number of ff relative to XX in terms of the usual condition number of gg and a suitable condition number of the pair (A,X)(A,X).

Keywords

Cite

@article{arxiv.1901.08359,
  title  = {The condition number of a function relative to a set},
  author = {David H. Gutman and Javier F. Pena},
  journal= {arXiv preprint arXiv:1901.08359},
  year   = {2020}
}

Comments

40 pages, 4 figures. To Appear in Mathematical Programming

R2 v1 2026-06-23T07:20:57.750Z