English

A unified framework of SAGE and SONC polynomials and its duality theory

Algebraic Geometry 2020-09-22 v2 Optimization and Control

Abstract

We introduce and study a cone which consists of a class of generalized polynomial functions and which provides a common framework for recent non-negativity certificates of polynomials in sparse settings. Specifically, this S\mathcal{S}-cone generalizes and unifies sums of arithmetic-geometric mean exponentials (SAGE) and sums of non-negative circuit polynomials (SONC). We provide a comprehensive characterization of the dual cone of the S\mathcal{S}-cone, which even for its specializations provides novel and projection-free descriptions. As applications of this result, we give an exact characterization of the extreme rays of the S\mathcal{S}-cone and thus also of its specializations, and we provide a subclass of functions for which non-negativity coincides with membership in the S\mathcal{S}-cone. Moreover, we derive from the duality theory an approximation result of non-negative univariate polynomials and show that a SONC analogue of Putinar's Positivstellensatz does not exist even in the univariate case.

Keywords

Cite

@article{arxiv.1903.08966,
  title  = {A unified framework of SAGE and SONC polynomials and its duality theory},
  author = {Lukas Katthän and Helen Naumann and Thorsten Theobald},
  journal= {arXiv preprint arXiv:1903.08966},
  year   = {2020}
}

Comments

Revised version, 27 pages