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Exact Simulation for Discrete Time Spin Systems and Unilateral Fields

机译:离散时间自旋系统和单边场的精确仿真

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摘要

In this paper we generalize the technique presented by H?ggstr?m and Steif (Comb. Probab. Comput. 9:425–439, 2000) for the exact simulation of finite sections of infinite-volume Gibbs random fields, to a more general class of discrete time nearest neighbour spin systems. The main role is played by an auxiliary binary field, which indicates the sampling region. Percolation bounds can be used to prove that the algorithm terminates a.s. In the simplest case this field is Bernoulli; however blocking techniques can be used that destroy the independence property but extend the validity of the algorithm. Finally, the connection with stationary unilateral fields in the plane considered by Pickard (Adv. Appl. Probab. 12:655–671, 1980) and Galbraith and Walley (J. Appl. Probab. 19:332–343, 1982) is discussed.
机译:在本文中,我们将H?ggstr?m和Steif(Comb。Probab。Comput。9:425–439,2000)提出的用于无穷大Gibbs随机场有限截面的精确模拟的技术推广到更一般一类离散时间最近邻旋转系统。主要作用是由一个辅助二进制字段表示的,该字段指示采样区域。渗流边界可用于证明算法终止a.s.在最简单的情况下,该字段为Bernoulli。但是可以使用阻塞技术来破坏独立性,但可以扩展算法的有效性。最后,讨论了与Pickard(Adv。Appl。Probab。12:655-671,1980)和Galbraith和Walley(J. Appl。Probab。19:332-343,1982)所考虑的平面中的静止单边场的联系。 。

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