群移动的有效投影决定群元胞自动机的性质

IF 0.6 4区 计算机科学 Q4 COMPUTER SCIENCE, THEORY & METHODS International Journal of Foundations of Computer Science Pub Date : 2023-07-19 DOI:10.1142/s0129054123480040
Pierre Béaur, Jarkko Kari
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引用次数: 0

摘要

关于元胞自动机的许多决策问题已知在代数元胞自动机的情况下是可决定的,即当状态集具有代数结构并且自动机作为态射时。研究最多的例子包括有限域、有限交换环和有限交换群。在本文中,我们提供了将这些结果推广到群元胞自动机的更广泛情况的方法,即状态集是有限(可能是非交换的)有限群的情况。位形空间甚至不一定是全位移而是一个子位移-称为群位移-它是在任意维数d上的全位移的子群。我们特别证明了群元胞自动机的注入性、满射性、等连续性、敏感性和幂零性是可决定的,而非传递性是半可决定的。注入性总是意味着满射性,并且联合周期点在极限集中是密集的。伊甸园定理的摩尔方向适用于所有群元胞自动机,而Myhill方向在某些情况下失效。这些证明是基于群位移的有效投影运算,特别是应用于群元胞自动机的有效时空图集。这使得人们可以有效地构造群元胞自动机的轨迹和极限集。这项工作的初步版本在2020年计算机科学数学基础会议上提出。
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Effective Projections on Group Shifts to Decide Properties of Group Cellular Automata

Many decision problems concerning cellular automata are known to be decidable in the case of algebraic cellular automata, that is, when the state set has an algebraic structure and the automaton acts as a morphism. The most studied cases include finite fields, finite commutative rings and finite commutative groups. In this paper, we provide methods to generalize these results to the broader case of group cellular automata, that is, the case where the state set is a finite (possibly non-commutative) finite group. The configuration space is not even necessarily the full shift but a subshift — called a group shift — that is a subgroup of the full shift on d, for any number d of dimensions. We show, in particular, that injectivity, surjectivity, equicontinuity, sensitivity and nilpotency are decidable for group cellular automata, and non-transitivity is semi-decidable. Injectivity always implies surjectivity, and jointly periodic points are dense in the limit set. The Moore direction of the Garden-of-Eden theorem holds for all group cellular automata, while the Myhill direction fails in some cases. The proofs are based on effective projection operations on group shifts that are, in particular, applied on the set of valid space-time diagrams of group cellular automata. This allows one to effectively construct the traces and the limit sets of group cellular automata. A preliminary version of this work was presented at the conference Mathematical Foundations of Computer Science 2020.

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来源期刊
International Journal of Foundations of Computer Science
International Journal of Foundations of Computer Science 工程技术-计算机:理论方法
CiteScore
1.60
自引率
12.50%
发文量
63
审稿时长
3 months
期刊介绍: The International Journal of Foundations of Computer Science is a bimonthly journal that publishes articles which contribute new theoretical results in all areas of the foundations of computer science. The theoretical and mathematical aspects covered include: - Algebraic theory of computing and formal systems - Algorithm and system implementation issues - Approximation, probabilistic, and randomized algorithms - Automata and formal languages - Automated deduction - Combinatorics and graph theory - Complexity theory - Computational biology and bioinformatics - Cryptography - Database theory - Data structures - Design and analysis of algorithms - DNA computing - Foundations of computer security - Foundations of high-performance computing
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