English

Functional Connectivity Networks for Transportation Delay Analysis: from Theory to Software

Physics and Society 2025-10-08 v1 Information Theory math.IT Computational Physics Data Analysis, Statistics and Probability

Abstract

Within the endeavour of modelling and understanding the propagation of delays in transportation networks, an approach that has attracted increasing interest in the last decade is the creation of functional network representations. These graphs map elements of interest (e.g. airports or stations) as nodes, and derive pairwise propagation patterns from their dynamics through correlation and causality tests. In spite of multiple notable results, this approach still lacks a coherent framework, with decisions related to many fundamental steps being left to the judgement of the researcher. We here provide an introduction to the theory behind functional networks for transportation systems, detailing the main steps and the associated pitfalls. We further introduce a Python package, delaynet, designed to support the researcher in the reconstruction and analysis of such networks. We finally present an analysis of the propagation of delays in the Swiss train system; and discuss future research steps.

Keywords

Cite

@article{arxiv.2510.05143,
  title  = {Functional Connectivity Networks for Transportation Delay Analysis: from Theory to Software},
  author = {Carlson Moses Büth and Massimiliano Zanin},
  journal= {arXiv preprint arXiv:2510.05143},
  year   = {2025}
}

Comments

25 pages, 11 figures, 3 tables, for documentation, see https://delaynet.readthedocs.io/

R2 v1 2026-07-01T06:19:45.102Z