A Compressive Sensing Inspired Monte-Carlo Method for Combinatorial Optimization
Optimization and Control
2025-10-30 v1 Quantum Physics
Abstract
In this paper, we present the Monte-Carlo Compressive Optimization algorithm, a new method to solve a combinatorial optimization problem that is assumed compressible. The method relies on random queries to the objective function in order to estimate generalized moments. Next, a greedy algorithm from compressive sensing is repurposed to find the global optimum when not overfitting to samples. We provide numerical results giving evidences that our methods overcome state-of-the-art dual annealing. Moreover, we also give theoretical justification of the algorithm success and analyze its properties. The practicality of our algorithm is enhanced by the ability to tune heuristic parameters to available computational resources.
Cite
@article{arxiv.2510.24755,
title = {A Compressive Sensing Inspired Monte-Carlo Method for Combinatorial Optimization},
author = {Baptiste Chevalier and Shimpei Yamaguchi and Wojciech Roga and Masahiro Takeoka},
journal= {arXiv preprint arXiv:2510.24755},
year = {2025}
}
Comments
29 pages, 4 figures