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Fully asynchronous behavior of double-quiescent elementary cellular automata

机译:双静态基本元胞自动机的完全异步行为

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In this paper we propose a probabilistic analysis of the fully asynchronous behavior (i.e., two cells are never simultaneously updated, as in a continuous time process) of elementary finite cellular automata (i.e., {0, 1} states, radius 1 and unidimensional) for which both states are quiescent (i.e., (0, 0, 0) → 0 and (1,1,1) → 1). It has been experimentally shown in previous works that introducing asynchronism in the global function of a cellular automata was perturbing its behavior, but as far as we know, only few theoretical work exists on the subject. The cellular automata we consider live on a ring of size n and asynchronism is introduced as follows: at each time step one cell is selected uniformly at random and the transition is made on this cell while the others stay in the same state. Among the 64 cellular automata belonging to the class we consider, we show that 9 of them diverge on all non-trivial configurations while the 55 other converge almost surely to a random fixed point. We show that the exact convergence time of these 55 automata can only take the following values: either 0, Θ(n ln n), Θ(n{sup}2), Θ(n{sup}3) or Θ(n2{sup}n). Furthermore, the global behavior of each of these cellular automata is fully determined by reading its code.
机译:在本文中,我们对基本有限元胞自动机(即{0,1}状态,半径1和一维)的完全异步行为(即,两个单元永远不会同时更新,如在连续的时间过程中)进行概率分析。对于这两个状态都是静态的(即(0,0,0)→0和(1,1,1)→1)。在先前的工作中已经通过实验证明,将异步引入到细胞自动机的全局功能中会扰乱其行为,但是据我们所知,关于该主题的理论研究很少。我们认为细胞自动机生活在一个大小为n的环上,并引入了异步性,方法如下:在每个时间步中,均一地随机选择一个单元,并在该单元上进行过渡,而其他单元则保持相同状态。在我们考虑的属于该类别的64个细胞自动机中,我们显示其中9个在所有非平凡配置上会有所不同,而其他55个几乎肯定会收敛到随机的固定点。我们证明了这55个自动机的确切收敛时间只能取以下值:0,Θ(n ln n),Θ(n {sup} 2),Θ(n {sup} 3)或Θ(n2 { sup} n)。此外,每个细胞自动机的全局行为都可以通过读取其代码来完全确定。

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