Finite automata with time-delay blocks

K. Chatterjee, T. Henzinger, Vinayak S. Prabhu
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引用次数: 2

Abstract

The notion of delays arises naturally in many computational models, such as, in the design of circuits, control systems, and dataflow languages. In this work, we introduce automata with delay blocks (ADBs), extending finite state automata with variable time delay blocks, for deferring individual transition output symbols, in a discrete-time setting. We show that the ADB languages strictly subsume the regular languages, and are incomparable in expressive power to the context-free languages. We show that ADBs are closed under union, concatenation and Kleene star, and under intersection with regular languages, but not closed under complementation and intersection with other ADB languages. We show that the emptiness and the membership problems are decidable in polynomial time for ADBs, whereas the universality problem is undecidable. Finally we consider the linear-time model checking problem, i.e., whether the language of an ADB is contained in a regular language, and show that the model checking problem is PSPACE-complete.
具有时滞块的有限自动机
延迟的概念自然出现在许多计算模型中,例如电路、控制系统和数据流语言的设计。在这项工作中,我们引入了具有延迟块的自动机(ADBs),扩展了具有可变时间延迟块的有限状态自动机,用于延迟离散时间设置中的单个转换输出符号。我们表明,ADB语言严格地包含了常规语言,并且在表达能力方面与上下文无关的语言是无法比拟的。结果表明,ADB语言在并并、串联、Kleene星形和与正则语言的交集下是封闭的,而在互补和与其他ADB语言的交集下是不封闭的。证明了adb的空性问题和隶属性问题在多项式时间内是可确定的,而通用性问题是不可确定的。最后考虑了线性时间模型检验问题,即ADB的语言是否包含在正则语言中,并证明了模型检验问题是pspace完备的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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