Approximation Algorithms for $\ell_p$-Shortest Path and $\ell_p$-Group Steiner Tree
Data Structures and Algorithms
2024-04-30 v1
Abstract
We present polylogarithmic approximation algorithms for variants of the Shortest Path, Group Steiner Tree, and Group ATSP problems with vector costs. In these problems, each edge e has a non-negative vector cost . For a feasible solution - a path, subtree, or tour (respectively) - we find the total vector cost of all the edges in the solution and then compute the -norm of the obtained cost vector (we assume that is an integer). Our algorithms for series-parallel graphs run in polynomial time and those for arbitrary graphs run in quasi-polynomial time. To obtain our results, we introduce and use new flow-based Sum-of-Squares relaxations. We also obtain a number of hardness results.
Cite
@article{arxiv.2404.17669,
title = {Approximation Algorithms for $\ell_p$-Shortest Path and $\ell_p$-Group Steiner Tree},
author = {Yury Makarychev and Max Ovsiankin and Erasmo Tani},
journal= {arXiv preprint arXiv:2404.17669},
year = {2024}
}