无限词上的可逆变换器

Luc Dartois, Paul Gastin, Loïc Germerie Guizouarn, R. Govind, Shankaranarayanan Krishna
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摘要

确定性双向变换器捕捉了一类规则函数。组成双向变换器的高效性直接影响到与反应式合成相关的算法问题,在这些问题中,变换规范被转换为等价变换器。这些规范以模块化的方式呈现,组合后的机器可以模拟完整的规范。Dartois 等人的一项重要研究结果表明,当底层转换器是可逆的,也就是说,如果它们既是确定性的,又是共同确定性的,那么双向转换器的组合就可以享受多项式组合。与一般的确定性双向变换器相比,这是一个重大改进,因为一般情况下,双向变换器的组成会导致输入大小的双倍指数膨胀。此外,他们还证明了可逆双向变换器与确定性双向变换器具有相同的表现力。然而,在无穷字之上的可逆变换器的表达能力问题仍然悬而未决。在本文中,我们介绍了无限词上的可逆双向变换器,并证明它们与无限词上的确定性双向变换器具有相同的表达力。此外,我们还证明了在无限词上组合两个可逆双向变换器只产生多项式复杂性,从而为在无限词上组合变换器的高效程序奠定了基础。
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Reversible Transducers over Infinite Words
Deterministic two-way transducers capture the class of regular functions. The efficiency of composing two-way transducers has a direct implication in algorithmic problems related to reactive synthesis, where transformation specifications are converted into equivalent transducers. These specifications are presented in a modular way, and composing the resultant machines simulates the full specification. An important result by Dartois et al. shows that composition of two-way transducers enjoy a polynomial composition when the underlying transducer is reversible, that is, if they are both deterministic and co-deterministic. This is a major improvement over general deterministic two-way transducers, for which composition causes a doubly exponential blow-up in the size of the inputs in general. Moreover, they show that reversible two-way transducers have the same expressiveness as deterministic two-way transducers. However, the question of expressiveness of reversible transducers over infinite words is still open. In this article, we introduce the class of reversible two-way transducers over infinite words and show that they enjoy the same expressive power as deterministic two-way transducers over infinite words. This is done through a non-trivial, effective construction inducing a single exponential blow-up in the set of states. Further, we also prove that composing two reversible two-way transducers over infinite words incurs only a polynomial complexity, thereby providing foundations for efficient procedure for composition of transducers over infinite words.
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