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Clusterpath Gaussian Graphical Modeling

delete2026-01-01
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OA
AI
D
Daniel J.W. Touw *
A
Andreas Alfons
P
Patrick J. F. Groenen
I
Ines Wilms
DOI:10.1080/10618600.2026.2653764delete
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Abstract

Abstract

En 中文
Graphical models serve as effective tools for visualizing conditional dependencies between variables. However, as the number of variables grows, interpretation becomes increasingly difficult, and estimation uncertainty increases due to the large number of parameters relative to the number of observations. To address these challenges, we introduce the Clusterpath estimator of the Gaussian Graphical Model (CGGM) that encourages variable clustering in the graphical model in a data-driven way. Through the use of an aggregation penalty, we group variables together, which in turn results in a block-structured precision matrix whose block structure remains preserved in the covariance matrix. The CGGM estimator is formulated as the solution to a convex optimization problem, making it easy to incorporate other popular penalization schemes which we illustrate through the combination of an aggregation and sparsity penalty. We present a computationally efficient implementation of the CGGM estimator by using a cyclic block coordinate descent algorithm. In simulations, we show that CGGM not only matches, but oftentimes outperforms other state-of-the-art methods for variable clustering in graphical models. We also demonstrate CGGM's practical advantages and versatility on a diverse collection of empirical applications.
Keywords:
Block structure
Covariance matrix
Hierarchical clustering
Precision matrix
Unsupervised learning

Journal

J
Journal of Computational and Graphical Statistics
IF:
1.8
Papers:
138
Citations:
6.4K

Organization

E
erasmus university rotterdam
Scholars:
2.8K
Papers: 1.2K
Citations: 0
E
erasmus university rotterdam - excl erasmus mc
Scholars:
5.5K
Papers: 5.7K
Citations: 6