Certified Constraint Propagation and Dual Proof Analysis in a Numerically Exact MIP Solver
Optimization and Control
2024-03-21 v1
Abstract
This paper presents the integration of constraint propagation and dual proof analysis in an exact, roundoff-error-free MIP solver. The authors employ safe rounding methods to ensure that all results remain provably correct, while sacrificing as little computational performance as possible in comparison to a pure floating-point implementation. The study also addresses the adaptation of certification techniques for correctness verification. Computational studies demonstrate the effectiveness of these techniques, showcasing a 23% performance improvement on the MIPLIB 2017 benchmark test set.
Keywords
Cite
@article{arxiv.2403.13567,
title = {Certified Constraint Propagation and Dual Proof Analysis in a Numerically Exact MIP Solver},
author = {Sander Borst and Leon Eifler and Ambros Gleixner},
journal= {arXiv preprint arXiv:2403.13567},
year = {2024}
}