Clustering of multivariate tail dependence using conditional methods

Fuente: arXiv
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Main Authors: O'Toole, Patrick, Rohrbeck, Christian, Richards, Jordan
Format: Preprint
Published: 2025
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author O'Toole, Patrick
Rohrbeck, Christian
Richards, Jordan
author_facet O'Toole, Patrick
Rohrbeck, Christian
Richards, Jordan
contents The conditional extremes (CE) framework has proven useful for analysing the joint tail behaviour of random vectors. However, when applied across many locations or variables, it can be difficult to interpret or compare the resulting extremal dependence structures, particularly for high dimensional vectors. To address this, we propose a novel clustering method for multivariate extremes using the CE framework. Our approach introduces a closed-form, computationally efficient dissimilarity measure for multivariate tails, based on the skew-geometric Jensen-Shannon divergence, and is applicable in arbitrary dimensions. Applying standard clustering algorithms to a matrix of pairwise distances, we obtain interpretable groups of random vectors with homogeneous tail dependence. Simulation studies demonstrate that our method outperforms existing approaches for clustering bivariate extremes, and uniquely extends to the multivariate setting. In our application to Irish meteorological data, our clustering identifies spatially coherent regions with similar extremal dependence between precipitation and wind speeds.
format Preprint
id arxiv_https___arxiv_org_abs_2510_20424
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Clustering of multivariate tail dependence using conditional methods
O'Toole, Patrick
Rohrbeck, Christian
Richards, Jordan
Methodology
Applications
The conditional extremes (CE) framework has proven useful for analysing the joint tail behaviour of random vectors. However, when applied across many locations or variables, it can be difficult to interpret or compare the resulting extremal dependence structures, particularly for high dimensional vectors. To address this, we propose a novel clustering method for multivariate extremes using the CE framework. Our approach introduces a closed-form, computationally efficient dissimilarity measure for multivariate tails, based on the skew-geometric Jensen-Shannon divergence, and is applicable in arbitrary dimensions. Applying standard clustering algorithms to a matrix of pairwise distances, we obtain interpretable groups of random vectors with homogeneous tail dependence. Simulation studies demonstrate that our method outperforms existing approaches for clustering bivariate extremes, and uniquely extends to the multivariate setting. In our application to Irish meteorological data, our clustering identifies spatially coherent regions with similar extremal dependence between precipitation and wind speeds.
title Clustering of multivariate tail dependence using conditional methods
topic Methodology
Applications
url https://arxiv.org/abs/2510.20424