December 2022 The completion of covariance kernels
Kartik G. Waghmare, Victor M. Panaretos
Author Affiliations +
Ann. Statist. 50(6): 3281-3306 (December 2022). DOI: 10.1214/22-AOS2228

Abstract

We consider the problem of positive-semidefinite continuation: extending a partially specified covariance kernel from a subdomain Ω of a rectangular domain I×I to a covariance kernel on the entire domain I×I. For a broad class of domains Ω called serrated domains, we are able to present a complete theory. Namely, we demonstrate that a canonical completion always exists and can be explicitly constructed. We characterise all possible completions as suitable perturbations of the canonical completion, and determine necessary and sufficient conditions for a unique completion to exist. We interpret the canonical completion via the graphical model structure it induces on the associated Gaussian process. Furthermore, we show how the estimation of the canonical completion reduces to the solution of a system of linear statistical inverse problems in the space of Hilbert–Schmidt operators, and derive rates of convergence. We conclude by providing extensions of our theory to more general forms of domains, and by demonstrating how our results can be used to construct covariance estimators from sample path fragments of the associated stochastic process. Our results are illustrated numerically by way of a simulation study and a real example.

Acknowledgments

The authors would like to thank the anonymous referees, an Associate Editor and the Editor for their constructive comments that improved the content and presentation of this paper.

Citation

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Kartik G. Waghmare. Victor M. Panaretos. "The completion of covariance kernels." Ann. Statist. 50 (6) 3281 - 3306, December 2022. https://doi.org/10.1214/22-AOS2228

Information

Received: 1 May 2022; Revised: 1 September 2022; Published: December 2022
First available in Project Euclid: 21 December 2022

MathSciNet: MR4524497
zbMATH: 07641126
Digital Object Identifier: 10.1214/22-AOS2228

Subjects:
Primary: 62G05 , 62H22 , 62M20
Secondary: 15A83 , 45Q05 , 47A57

Keywords: fragments , Functional data analysis , Graphical model , Identifiability , inverse problem , Positive-definite continuation

Rights: Copyright © 2022 Institute of Mathematical Statistics

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Vol.50 • No. 6 • December 2022
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