English

An Analysis of Random Elections with Large Numbers of Voters

Theoretical Economics 2020-09-08 v1 Multiagent Systems

Abstract

In an election in which each voter ranks all of the candidates, we consider the head-to-head results between each pair of candidates and form a labeled directed graph, called the margin graph, which contains the margin of victory of each candidate over each of the other candidates. A central issue in developing voting methods is that there can be cycles in this graph, where candidate A\mathsf{A} defeats candidate B\mathsf{B}, B\mathsf{B} defeats C\mathsf{C}, and C\mathsf{C} defeats A\mathsf{A}. In this paper we apply the central limit theorem, graph homology, and linear algebra to analyze how likely such situations are to occur for large numbers of voters. There is a large literature on analyzing the probability of having a majority winner; our analysis is more fine-grained. The result of our analysis is that in elections with the number of voters going to infinity, margin graphs that are more cyclic in a certain precise sense are less likely to occur.

Keywords

Cite

@article{arxiv.2009.02979,
  title  = {An Analysis of Random Elections with Large Numbers of Voters},
  author = {Matthew Harrison-Trainor},
  journal= {arXiv preprint arXiv:2009.02979},
  year   = {2020}
}