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Improving Gibbs Sampler Scan Quality with DoGS

Machine Learning 2017-07-20 v1 Machine Learning Probability Methodology

Abstract

The pairwise influence matrix of Dobrushin has long been used as an analytical tool to bound the rate of convergence of Gibbs sampling. In this work, we use Dobrushin influence as the basis of a practical tool to certify and efficiently improve the quality of a discrete Gibbs sampler. Our Dobrushin-optimized Gibbs samplers (DoGS) offer customized variable selection orders for a given sampling budget and variable subset of interest, explicit bounds on total variation distance to stationarity, and certifiable improvements over the standard systematic and uniform random scan Gibbs samplers. In our experiments with joint image segmentation and object recognition, Markov chain Monte Carlo maximum likelihood estimation, and Ising model inference, DoGS consistently deliver higher-quality inferences with significantly smaller sampling budgets than standard Gibbs samplers.

Keywords

Cite

@article{arxiv.1707.05807,
  title  = {Improving Gibbs Sampler Scan Quality with DoGS},
  author = {Ioannis Mitliagkas and Lester Mackey},
  journal= {arXiv preprint arXiv:1707.05807},
  year   = {2017}
}

Comments

ICML 2017

R2 v1 2026-06-22T20:50:50.753Z