Chaotic Behavior of One-Dimensional Cellular Automata Rule 24

Author:

Bie Zujie1ORCID,Han Qi2,Liu Chao2,Huang Junjian3ORCID,Song Lepeng2,Pei Yangjun2

Affiliation:

1. Internet Data Center, Chongqing University of Science and Technology, Chongqing 401331, China

2. School of Electrical and Information Engineering, Chongqing University of Science and Technology, Chongqing 401331, China

3. Department of Mathematics and Information Engineering, Chongqing University of Education College, Chongqing 400065, China

Abstract

Wolfram divided the 256 elementary cellular automata rules informally into four classes using dynamical concepts like periodicity, stability, and chaos. Rule 24, which is Bernoulliστ-shift rule and is member of Wolfram’s class II, is said to be simple as periodic before. Therefore, it is worthwhile studying dynamical behaviors of four rules, whether they possess chaotic attractors or not. In this paper, the complex dynamical behaviors of rule 24 of one-dimensional cellular automata are investigated from the viewpoint of symbolic dynamics. We find that rule 24 is chaotic in the sense of both Li-Yorke and Devaney on its attractor. Furthermore, we prove that four rules of global equivalenceε52of cellular automata are topologically conjugate. Then, we use diagrams to explain the attractor of rule 24, where characteristic function is used to describe the fact that all points fall into Bernoulli-shift map after two iterations under rule 24.

Funder

Research Project of Chongqing University of Science and Technology

Publisher

Hindawi Limited

Subject

Modelling and Simulation

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