论树自动机、生成函数和微分方程

Rida Ait El Manssour, Vincent Cheval, Mahsa Shirmohammadi, James Worrell
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摘要

本文介绍了整体树自动机:加权树自动机和整体递归的共同扩展。我们证明了这种自动机所代表的树序列的生成函数是微分代数的。反过来,我们给出了一种算法,输入微分代数幂级数(表示为有理动力系统的解),并输出一个自动机,其产生函数就是给定的幂级数。我们使用该算法来获得给定组合物种的组合对象族的指数生成函数的自动机表示。利用微分代数的技术,我们证明了两个自动机是否表示相同的形式树数列以及它们是否具有相同的生成函数都是可以判定的。
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On Tree Automata, Generating Functions, and Differential Equations
In this paper we introduce holonomic tree automata: a common extension of weighted tree automata and holonomic recurrences. We show that the generating function of the tree series represented by such an automaton is differentially algebraic. Conversely, we give an algorithm that inputs a differentially algebraic power series, represented as a solution of a rational dynamical system, and outputs an automaton whose generating function is the given series. Such an automaton yields a recurrence that can be used to compute the terms of the power series. We use the algorithm to obtain automaton representations of exponential generating functions of families of combinatorial objects given as combinatorial species. Using techniques from differential algebra, we show that it is decidable both whether two automata represent the same formal tree series and whether they have the same generating function.
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