子规则语言在操作下的闭包属性

IF 0.6 4区 计算机科学 Q4 COMPUTER SCIENCE, THEORY & METHODS International Journal of Foundations of Computer Science Pub Date : 2023-05-04 DOI:10.1142/s0129054123450016
Viktor Olejár, Alexander Szabari
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引用次数: 0

摘要

如果在操作数属于该类时,结果语言属于该类,则该类在给定操作下关闭。在交、并、连接、幂、正闭包、星形、反转、互补等基本运算下,研究了正则语言的各种子类的闭包性质。我们考虑了以下类:确定语言及其变体(左理想、有限生成左理想、对称确定、广义确定和组合),双面彗星及其变体彗星和恒星,以及单态、有限、有序、无星和幂分离语言。我们还概述了凸语言的子类(理想语言、自由语言和封闭语言的类)、无并集语言和群语言。我们总结了这些类之间的一些包含关系。随后,对于类和操作的所有对,给出该类在该操作下是否闭合的答案。
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Closure Properties of Subregular Languages Under Operations
A class of languages is closed under a given operation if the resulting language belongs to this class whenever the operands belong to it. We examine the closure properties of various subclasses of regular languages under basic operations of intersection, union, concatenation and power, positive closure and star, reversal, and complementation. We consider the following classes: definite languages and their variants (left ideal, finitely generated left ideal, symmetric definite, generalized definite and combinational), two-sided comets and their variants comets and stars, and the classes of singleton, finite, ordered, star-free, and power-separating languages. We also give an overview about subclasses of convex languages (classes of ideal, free, and closed languages), union-free languages, and group languages. We summarize some inclusion relations between these classes. Subsequently, for all pairs of a class and an operation, we provide an answer whether this class is closed under this operation or not.
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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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