Simulation of Two-Way Pushdown Automata Revisited

R. Glück
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引用次数: 13

Abstract

The linear-time simulation of 2-way deterministic pushdown automata (2DPDA) by the Cook and Jones constructions is revisited. Following the semantics-based approach by Jones, an interpreter is given which, when extended with random-access memory, performs a linear-time simulation of 2DPDA. The recursive interpreter works without the dump list of the original constructions, which makes Cook's insight into linear-time simulation of exponential-time automata more intuitive and the complexity argument clearer. The simulation is then extended to 2-way nondeterministic pushdown automata (2NPDA) to provide for a cubic-time recognition of context-free languages. The time required to run the final construction depends on the degree of nondeterminism. The key mechanism that enables the polynomial-time simulations is the sharing of computations by memoization.
双向下推自动机的仿真研究
本文重新研究了Cook和Jones构造的双向确定性下推自动机(2DPDA)的线性时间模拟。遵循Jones基于语义的方法,给出了一个解释器,当扩展随机访问内存时,执行2DPDA的线性时间模拟。递归解释器工作时不需要原始结构的转储列表,这使得Cook对指数时间自动机的线性时间模拟的理解更加直观,复杂性的论证也更加清晰。然后将模拟扩展到双向不确定性下推自动机(2NPDA),以提供对上下文无关语言的三次时间识别。运行最终构造所需的时间取决于不确定性的程度。实现多项式时间模拟的关键机制是通过记忆共享计算。
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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