Efficient Algorithms for Morphisms over Omega-Regular Languages

September 21, 2015 ยท The Ethereal ยท ๐Ÿ› Foundations of Software Technology and Theoretical Computer Science

๐Ÿ”ฎ THE ETHEREAL: The Ethereal
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Authors Lukas Fleischer, Manfred Kufleitner arXiv ID 1509.06215 Category cs.FL: Formal Languages Cross-listed cs.DS Citations 1 Venue Foundations of Software Technology and Theoretical Computer Science Last Checked 2 months ago
Abstract
Morphisms to finite semigroups can be used for recognizing omega-regular languages. The so-called strongly recognizing morphisms can be seen as a deterministic computation model which provides minimal objects (known as the syntactic morphism) and a trivial complementation procedure. We give a quadratic-time algorithm for computing the syntactic morphism from any given strongly recognizing morphism, thereby showing that minimization is easy as well. In addition, we give algorithms for efficiently solving various decision problems for weakly recognizing morphisms. Weakly recognizing morphism are often smaller than their strongly recognizing counterparts. Finally, we describe the language operations needed for converting formulas in monadic second-order logic (MSO) into strongly recognizing morphisms, and we give some experimental results.
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