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When Tables Tell It All: Qualitative Spatial and Temporal Reasoning Based on Linear Orderings

机译:当表格说明一切时:基于线性排序的定性时空推理

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In Bennett, Isli and Cohn put out the following challenge to researchers working with theories based on composition tables (CT): give a general characterization of theories and relational constraint languages for which a complete proof procedure can be specified by a CT. For theories based on CTs, they make the distinction between a weak, consistency-based interpretation of the CT, and a stronger extensional definition. In this paper, we take up a limited aspect of the challenge, namely, we characterize a subclass of formalisms for which the weak interpretation can be related in a canonical way to a structure based on a total ordering, while the strong interpretations have the property of aleph-zero categoricity (all countable models are isomorphic). Our approach is based on algebraic, rather than logical, methods. It can be summarized by two keywords: relation algebra and weak representation.
机译:在Bennett中,Isli和Cohn向研究基于组合表(CT)的理论的研究人员提出了以下挑战:给出理论和关系约束语言的一般特征,而CT可以为其指定完整的证明程序。对于基于CT的理论,他们在CT的基于一致性的较弱解释和更强的扩展定义之间进行了区分。在本文中,我们讨论了挑战的一个有限方面,即,我们描述了形式主义的一个子类,对于该子类,弱解释可以以规范的方式与基于总顺序的结构相关联,而强解释则具有该属性零零分类(所有可数模型都是同构的)。我们的方法基于代数方法,而不是逻辑方法。它可以用两个关键词来概括:关系代数和弱表示。

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