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A Polynomial-Time Perfect Sampler for the Q-Ising with a Vertex-Independent Noise

机译:具有与顶点无关的噪声的Q多项式的多项式时间完美采样器

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摘要

We present a polynomial-time perfect sampler for the Q-Ising with a vertex-independent noise. The Q-Ising, one of the generalized models of the Ising, arose in the context of Bayesian image restoration in statistical mechanics. We study the distribution of Q-Ising on a two-dimensional square lattice over n vertices, that is, we deal with a discrete state space {1,…, Q}~n for a positive integer Q. Employing the Q-Ising (having a parameter β) as a prior distribution, and assuming a Gaussian noise (having another parameter α), a posterior is obtained from the Bayes' formula. Furthermore, we generalize it: the distribution of noise is not necessarily a Gaussian, but any vertex-independent noise. We first present a Gibbs sampler from our posterior, and also present a perfect sampler by defining a coupling via a monotone update function. Then, we show O(n log n) mixing time of the Gibbs sampler for the generalized model under a condition that β is sufFiciently small (whatever the distribution of noise is). In case of a Gaussian, we obtain another more natural condition for rapid mixing that α is sufficiently larger than β. Thereby, we show that the expected running time of our sampler is O(n log n).
机译:我们为Q-Ising提供了一个与顶点无关的噪声的多项式时间完美采样器。 Q-Ising是Ising的广义模型之一,是在统计力学中的贝叶斯图像恢复的背景下出现的。我们研究了n个顶点上二维正方形晶格上Q-Ising的分布,即,我们处理了一个正整数Q的离散状态空间{1,…,Q}〜n。使用Q-Ising(具有参数β)作为先验分布,并假设高斯噪声(具有另一个参数α),则从贝叶斯公式获得后验。此外,我们将其概括为:噪声的分布不一定是高斯分布,而是任何与顶点无关的噪声。我们首先从后验提出一个吉布斯采样器,然后通过单调更新函数定义一个耦合来提出一个完美的采样器。然后,我们展示了在β足够小(无论噪声分布如何)的条件下,广义模型的Gibbs采样器的O(n log n)混合时间。在高斯的情况下,我们获得了另一个更自然的快速混合条件,即α足够大于β。因此,我们表明采样器的预期运行时间为O(n log n)。

著录项

  • 来源
    《Computing and combinatorics》|2009年|328-337|共10页
  • 会议地点 Niagara Falls NY(US);Niagara Falls NY(US);Niagara Falls NY(US)
  • 作者单位

    Dept. of Mathematical Sciences, School of Science, Tokai University;

    Research Institute for Mathematical Sciences, Kyoto University;

    Dept. of Mathematical Sciences, School of Science, Tokai University;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 计算技术、计算机技术;
  • 关键词

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