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ADAPTIVE BAYESIAN ESTIMATION OF DISCRETE-CONTINUOUS DISTRIBUTIONS UNDER SMOOTHNESS AND SPARSITY
by
Pelenis, Justinas
, Norets, Andriy
in
adaptive rates
/ anisotropic smoothness
/ Bayesian analysis
/ Bayesian nonparametrics
/ Decision making models
/ Discrete choice
/ discrete choice models
/ discrete‐continuous distribution
/ Estimation
/ latent variables
/ minimax rates
/ mixed scale
/ mixtures of normal distributions
/ posterior contraction
/ Structural models
2022
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ADAPTIVE BAYESIAN ESTIMATION OF DISCRETE-CONTINUOUS DISTRIBUTIONS UNDER SMOOTHNESS AND SPARSITY
by
Pelenis, Justinas
, Norets, Andriy
in
adaptive rates
/ anisotropic smoothness
/ Bayesian analysis
/ Bayesian nonparametrics
/ Decision making models
/ Discrete choice
/ discrete choice models
/ discrete‐continuous distribution
/ Estimation
/ latent variables
/ minimax rates
/ mixed scale
/ mixtures of normal distributions
/ posterior contraction
/ Structural models
2022
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Do you wish to request the book?
ADAPTIVE BAYESIAN ESTIMATION OF DISCRETE-CONTINUOUS DISTRIBUTIONS UNDER SMOOTHNESS AND SPARSITY
by
Pelenis, Justinas
, Norets, Andriy
in
adaptive rates
/ anisotropic smoothness
/ Bayesian analysis
/ Bayesian nonparametrics
/ Decision making models
/ Discrete choice
/ discrete choice models
/ discrete‐continuous distribution
/ Estimation
/ latent variables
/ minimax rates
/ mixed scale
/ mixtures of normal distributions
/ posterior contraction
/ Structural models
2022
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ADAPTIVE BAYESIAN ESTIMATION OF DISCRETE-CONTINUOUS DISTRIBUTIONS UNDER SMOOTHNESS AND SPARSITY
Journal Article
ADAPTIVE BAYESIAN ESTIMATION OF DISCRETE-CONTINUOUS DISTRIBUTIONS UNDER SMOOTHNESS AND SPARSITY
2022
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Overview
We consider nonparametric estimation of a mixed discrete-continuous distribution under anisotropic smoothness conditions and a possibly increasing number of support points for the discrete part of the distribution. For these settings, we derive lower bounds on the estimation rates. Next, we consider a nonparametric mixture of normals model that uses continuous latent variables for the discrete part of the observations. We show that the posterior in this model contracts at rates that are equal to the derived lower bounds up to a log factor. Thus, Bayesian mixture of normals models can be used for (up to a log factor) optimal adaptive estimation of mixed discrete-continuous distributions. The proposed model demonstrates excellent performance in simulations mimicking the first stage in the estimation of structural discrete choice models.
Publisher
Wiley,Blackwell Publishing Ltd
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