FPS in action

IF 0.4 Q4 MATHEMATICS, APPLIED ACM Communications in Computer Algebra Pub Date : 2022-06-01 DOI:10.1145/3572867.3572873
Bertrand Teguia Tabuguia, W. Koepf
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Abstract

Linear recurrence equations with constant coefficients define the power series coefficients of rational functions. However, one usually prefers to have an explicit formula for the sequence of coefficients, provided that such a formula is "simple" enough. Simplicity is related to the compactness of the formula due to the presence of algebraic numbers: "the smaller, the simpler". This poster showcases the capacity of recent updates on the Formal Power Series (FPS) algorithm, implemented in Maxima and Maple (convert/FormalPowerSeries), to find simple formulas for sequences like those from https://oeis.org/A307717, https://oeis.org/A226782, or https://oeis.org/A226784 by computing power series representations of their correctly guessed generating functions. We designed the algorithm for the more general context of univariate P-recursive sequences. Our implementations are available at http://www.mathematik.uni-kassel.de/~bteguia/FPS_webpage/FPS.htm
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FPS正在运行
常系数线性递推方程定义了有理函数的幂级数系数。然而,人们通常倾向于为系数序列提供一个明确的公式,前提是这样的公式足够“简单”。由于代数数的存在,简单性与公式的紧致性有关:“越小,越简单”。这张海报展示了在Maxima和Maple(convert/FormalPowerSeries)中实现的形式幂级数(FPS)算法的最新更新的能力,可以为以下序列找到简单的公式https://oeis.org/A307717,https://oeis.org/A226782或https://oeis.org/A226784通过计算它们正确猜测的生成函数的幂级数表示。我们为单变量P递归序列的更一般的上下文设计了算法。我们的实施可在http://www.mathematik.uni-kassel.de/~bteguia/FPS_webpage/FPS.htm
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