English

Persistent Homology of Geospatial Data: A Case Study with Voting

Computational Geometry 2019-09-18 v2 Social and Information Networks Algebraic Topology Physics and Society

Abstract

A crucial step in the analysis of persistent homology is the transformation of data into an appropriate topological object (in our case, a simplicial complex). Modern packages for persistent homology often construct Vietoris--Rips or other distance-based simplicial complexes on point clouds because they are relatively easy to compute. We investigate alternative methods of constructing these complexes and the effects of making associated choices during simplicial-complex construction on the output of persistent-homology algorithms. We present two new methods for constructing simplicial complexes from two-dimensional geospatial data (such as maps). We apply these methods to a California precinct-level voting data set, demonstrating that our new constructions can capture geometric characteristics that are missed by distance-based constructions. Our new constructions can thus yield more interpretable persistence modules and barcodes for geospatial data. In particular, they are able to distinguish short-persistence features that occur only for a narrow range of distance scales (e.g., voting behaviors in densely populated cities) from short-persistence noise by incorporating information about other spatial relationships between precincts.

Keywords

Cite

@article{arxiv.1902.05911,
  title  = {Persistent Homology of Geospatial Data: A Case Study with Voting},
  author = {Michelle Feng and Mason A. Porter},
  journal= {arXiv preprint arXiv:1902.05911},
  year   = {2019}
}

Comments

30 pages

R2 v1 2026-06-23T07:42:12.951Z