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A hierarchical Bayesian regression model for the uncertain functional constraint using screened scale mixtures of Gaussian distributions

Authors
Kim, Hea-JungChoi, TaeryonLee, Suyeon
Issue Date
2016
Publisher
TAYLOR & FRANCIS LTD
Keywords
elliptically contoured distribution; hierarchical Bayesian model; Markov chain Monte Carlo; rectangular screened scale mixtures; uncertain constraint
Citation
STATISTICS, v.50, no.2, pp.350 - 376
Indexed
SCIE
SCOPUS
Journal Title
STATISTICS
Volume
50
Number
2
Start Page
350
End Page
376
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/90267
DOI
10.1080/02331888.2015.1100616
ISSN
0233-1888
Abstract
This paper considers a hierarchical Bayesian analysis of regression models using a class of Gaussian scale mixtures. This class provides a robust alternative to the common use of the Gaussian distribution as a prior distribution in particular for estimating the regression function subject to uncertainty about the constraint. For this purpose, we use a family of rectangular screened multivariate scale mixtures of Gaussian distribution as a prior for the regression function, which is flexible enough to reflect the degrees of uncertainty about the functional constraint. Specifically, we propose a hierarchical Bayesian regression model for the constrained regression function with uncertainty on the basis of three stages of a prior hierarchy with Gaussian scale mixtures, referred to as a hierarchical screened scale mixture of Gaussian regression models (HSMGRM). We describe distributional properties of HSMGRM and an efficient Markov chain Monte Carlo algorithm for posterior inference, and apply the proposed model to real applications with constrained regression models subject to uncertainty.
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