Complexity of Round-Robin Allocation with Potentially Noisy Queries
Computer Science and Game Theory
2025-08-07 v1 Computational Complexity
Information Theory
math.IT
Abstract
We study the complexity of a fundamental algorithm for fairly allocating indivisible items, the round-robin algorithm. For agents and items, we show that the algorithm can be implemented in time in the worst case. If the agents' preferences are uniformly random, we establish an improved (expected) running time of . On the other hand, assuming comparison queries between items, we prove that queries are necessary to implement the algorithm, even when randomization is allowed. We also derive bounds in noise models where the answers to queries are incorrect with some probability. Our proofs involve novel applications of tools from multi-armed bandit, information theory, as well as posets and linear extensions.
Cite
@article{arxiv.2404.19402,
title = {Complexity of Round-Robin Allocation with Potentially Noisy Queries},
author = {Zihan Li and Pasin Manurangsi and Jonathan Scarlett and Warut Suksompong},
journal= {arXiv preprint arXiv:2404.19402},
year = {2025}
}