SAT预处理器和对称性

Markus Anders
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引用次数: 3

摘要

利用对称性是解决某些类型的SAT难题必不可少的方法。在过去的几十年里,许多在SAT中使用对称的技术已经发展起来。但无论如何精确地使用对称性,它们都必须首先被探测到。我们研究如何更快地检测到更多的对称性。最初的想法是为了获得对称检测的SAT预处理的好处。事实证明,在处理对称性之前应用现成的预处理器会遇到问题:预处理器可能会随意地从公式中删除对称性,严重阻碍对称性的利用。我们的主要贡献是一个理论框架,捕捉SAT预处理技术和对称性的关系。在此基础上,我们创建了一个可以在处理对称之前安全应用的对称感知预处理器。然后,我们证明应用预处理器不仅大大减少了对称检测和破坏次数,而且还揭示了在原始实例中无法检测到的隐藏对称性。总的来说,我们抛弃了将对称检测视为黑盒的传统观点,提出了一种新的特定于SAT中的对称检测方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SAT Preprocessors and Symmetry
Exploitation of symmetries is an indispensable approach to solve certain classes of difficult SAT instances. Numerous techniques for the use of symmetry in SAT have evolved over the past few decades. But no matter how symmetries are used precisely, they have to be detected first. We investigate how to detect more symmetry, faster. The initial idea is to reap the benefits of SAT preprocessing for symmetry detection. As it turns out, applying an off-the-shelf preprocessor before handling symmetry runs into problems: the preprocessor can haphazardly remove symmetry from formulas, severely impeding symmetry exploitation. Our main contribution is a theoretical framework that captures the relationship of SAT preprocessing techniques and symmetry. Based on this, we create a symmetry-aware preprocessor that can be applied safely before handling symmetry. We then demonstrate that applying the preprocessor does not only substantially decrease symmetry detection and breaking times, but also uncovers hidden symmetry not detectable in the original instances. Overall, we depart the conventional view of treating symmetry detection as a black-box, presenting a new application-specific approach to symmetry detection in SAT.
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