The complexity of geometric scaling
Optimization and Control
2024-02-23 v2 Metric Geometry
Abstract
Geometric scaling, introduced by Schulz and Weismantel in 2002, solves the integer optimization problem by means of primal augmentations, where is a polytope. We restrict ourselves to the important case when is a -polytope. Schulz and Weismantel showed that no more than calls to an augmentation oracle are required. This upper bound can be improved to using the early-stopping policy proposed in 2018 by Le Bodic, Pavelka, Pfetsch, and Pokutta. Considering both the maximum ratio augmentation variant of the method as well as its approximate version, we show that these upper bounds are essentially tight by maximizing over a -dimensional simplex with vectors such that is either or .
Keywords
Cite
@article{arxiv.2205.04063,
title = {The complexity of geometric scaling},
author = {Antoine Deza and Sebastian Pokutta and Lionel Pournin},
journal= {arXiv preprint arXiv:2205.04063},
year = {2024}
}
Comments
14 pages, 1 figure