Learning-augmented Maximum Independent Set
Abstract
We study the Maximum Independent Set (MIS) problem on general graphs within the framework of learning-augmented algorithms. The MIS problem is known to be NP-hard and is also NP-hard to approximate to within a factor of for any . We show that we can break this barrier in the presence of an oracle obtained through predictions from a machine learning model that answers vertex membership queries for a fixed MIS with probability . In the first setting we consider, the oracle can be queried once per vertex to know if a vertex belongs to a fixed MIS, and the oracle returns the correct answer with probability . Under this setting, we show an algorithm that obtains an -approximation in time where is the maximum degree of the graph. In the second setting, we allow multiple queries to the oracle for a vertex, each of which is correct with probability . For this setting, we show an -approximation algorithm using total queries and runtime.
Cite
@article{arxiv.2407.11364,
title = {Learning-augmented Maximum Independent Set},
author = {Vladimir Braverman and Prathamesh Dharangutte and Vihan Shah and Chen Wang},
journal= {arXiv preprint arXiv:2407.11364},
year = {2024}
}
Comments
APPROX 2024