English

Causal Discovery in Multivariate Time Series through Mutual Information Featurization

Machine Learning 2025-08-05 v1 Methodology Machine Learning

Abstract

Discovering causal relationships in complex multivariate time series is a fundamental scientific challenge. Traditional methods often falter, either by relying on restrictive linear assumptions or on conditional independence tests that become uninformative in the presence of intricate, non-linear dynamics. This paper proposes a new paradigm, shifting from statistical testing to pattern recognition. We hypothesize that a causal link creates a persistent and learnable asymmetry in the flow of information through a system's temporal graph, even when clear conditional independencies are obscured. We introduce Temporal Dependency to Causality (TD2C), a supervised learning framework that operationalizes this hypothesis. TD2C learns to recognize these complex causal signatures from a rich set of information-theoretic and statistical descriptors. Trained exclusively on a diverse collection of synthetic time series, TD2C demonstrates remarkable zero-shot generalization to unseen dynamics and established, realistic benchmarks. Our results show that TD2C achieves state-of-the-art performance, consistently outperforming established methods, particularly in high-dimensional and non-linear settings. By reframing the discovery problem, our work provides a robust and scalable new tool for uncovering causal structures in complex systems.

Keywords

Cite

@article{arxiv.2508.01848,
  title  = {Causal Discovery in Multivariate Time Series through Mutual Information Featurization},
  author = {Gian Marco Paldino and Gianluca Bontempi},
  journal= {arXiv preprint arXiv:2508.01848},
  year   = {2025}
}
R2 v1 2026-07-01T04:32:00.977Z