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关于细胞自动机模型近似值的推导及独立性假设

On the derivation of approximations to cellular automata models and the assumption of independence.

作者信息

Davies K J, Green J E F, Bean N G, Binder B J, Ross J V

机构信息

School of Mathematical Sciences, University of Adelaide, South Australia, Australia.

School of Mathematical Sciences, University of Adelaide, South Australia, Australia.

出版信息

Math Biosci. 2014 Jul;253:63-71. doi: 10.1016/j.mbs.2014.04.004. Epub 2014 Apr 24.

Abstract

Cellular automata are discrete agent-based models, generally used in cell-based applications. There is much interest in obtaining continuum models that describe the mean behaviour of the agents in these models. Previously, continuum models have been derived for agents undergoing motility and proliferation processes, however, these models only hold under restricted conditions. In order to narrow down the reason for these restrictions, we explore three possible sources of error in deriving the model. These sources are the choice of limiting arguments, the use of a discrete-time model as opposed to a continuous-time model and the assumption of independence between the state of sites. We present a rigorous analysis in order to gain a greater understanding of the significance of these three issues. By finding a limiting regime that accurately approximates the conservation equation for the cellular automata, we are able to conclude that the inaccuracy between our approximation and the cellular automata is completely based on the assumption of independence.

摘要

细胞自动机是基于离散主体的模型,通常用于基于细胞的应用中。人们对获得描述这些模型中主体平均行为的连续统模型非常感兴趣。此前,已经为经历运动和增殖过程的主体推导了连续统模型,然而,这些模型仅在受限条件下成立。为了缩小这些限制的原因,我们探索了推导模型时三种可能的误差来源。这些来源是极限论证的选择、使用离散时间模型而非连续时间模型以及位点状态之间独立性的假设。我们进行了严格的分析,以便更深入地理解这三个问题的重要性。通过找到一个能准确近似细胞自动机守恒方程的极限区域,我们能够得出结论,我们的近似与细胞自动机之间的不准确性完全基于独立性假设。

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