Further results on Minimal and Minimum Cylindrical Algebraic Decompositions
Abstract
We consider cylindrical algebraic decompositions (CADs) as a tool for representing semi-algebraic subsets of . In this framework, a CAD is adapted to a given set if is a union of cells of . Different algorithms computing an adapted CAD may produce different outputs, usually with redundant cell divisions. In this paper we analyse the possibility to remove the superfluous data. We thus consider the set of CADs of class () that are adapted to a finite family of semi-algebraic sets of , endowed with the refinement partial order and we study the existence of minimal and minimum element in . We show that for every such and every , there is a minimal CAD of class adapted to and smaller (i.e. coarser) than or equal to . In dimension or , this result is strengthened by proving the existence of a minimum element in . In contrast, for any , we provide explicit examples of semi-algebraic sets whose associated poset of adapted CADs does not admit a minimum. We then introduce a reduction relation on in order to define an algorithm for the computation of minimal CADs and we characterise those semi-algebraic sets for which has a minimum by means of confluence of the associated reduction system. We finally provide practical criteria for deciding if a semi-algebraic set does admit a minimum CAD and apply them to describe various concrete examples of semi-algebraic sets, along with their minimum CAD of class .
Cite
@article{arxiv.2601.09548,
title = {Further results on Minimal and Minimum Cylindrical Algebraic Decompositions},
author = {Lucas Michel and Pierre Mathonet and Naïm Zénaïdi},
journal= {arXiv preprint arXiv:2601.09548},
year = {2026}
}
Comments
Expanded version of the following paper : https://dl.acm.org/doi/10.1145/3666000.3669704