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Smoothing and adaptation of shifted P\'olya Tree ensembles - MaRDI portal

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Smoothing and adaptation of shifted P\'olya Tree ensembles

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Publication:6352071

DOI10.3150/21-BEJ1426arXiv2010.12299MaRDI QIDQ6352071

Author name not available (Why is that?)

Publication date: 23 October 2020

Abstract: Recently, S. Arlot and R. Genuer have shown that a model of random forests outperforms its single-tree counterpart in the estimation of alphaH"older functions, alphaleq2. This backs up the idea that ensembles of tree estimators are smoother estimators than single trees. On the other hand, most positive optimality results on Bayesian tree-based methods assume that alphaleq1. Naturally, one wonders whether Bayesian counterparts of forest estimators are optimal on smoother classes, just like it has been observed for frequentist estimators for alphaleq2. We dwell on the problem of density estimation and introduce an ensemble estimator from the classical (truncated) P'olya tree construction in Bayesian nonparametrics. The resulting Bayesian forest estimator is shown to lead to optimal posterior contraction rates, up to logarithmic terms, for the Hellinger and L1 distances on probability density functions on [0;1) for arbitrary H"older regularity alpha>0. This improves upon previous results for constructions related to the P'olya tree prior whose optimality was only proven in the case alphaleq1. Also, we introduce an adaptive version of this new prior in the sense that it does not require the knowledge of alpha to be defined and attain optimality.





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