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A Categorical Approach to Networks of Aligned Ontologies

机译:统一本体网络的分类方法

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Ontology matching and alignment are key mechanism for linking the diverse datasets and ontologies arising in the Semantic Web and other application areas for formalised ontologies. We show that category theory provides the powerful abstractions needed for a uniform treatment of ontology alignment at various levels: semantics, language design, reasoning and tools. The general representation and reasoning framework that we propose includes: (1) an abstract notion of logical system, consisting of a logic syntax and a model theory, based on an extension of institutions with additional features specific to alignments, (2) a declarative language to specify networks of ontologies and alignments, with independent control over specifying local ontologies and complex alignment relations, based on and improving the Distributed Ontology, Model and Specification Language DOL, (3) the possibility to align logically heterogeneous ontologies, and (4) the provision of generic proof support for global reasoning over networks of aligned ontologies, employing different semantics. In particular, we show how the three semantics of Zimmermann and Euzenat can be uniformly and faithfully represented using DOL language constructs, by refining them into four different kinds of semantics: simple, integrated (general and inclusive), and contextualised. Finally, we dis- cuss the implementation of the DOL alignment features in the Ontohub/HETS tool system.
机译:本体匹配和对齐是将语义网和其他应用领域中出现的各种数据集和本体进行链接的关键机制,用于形式化本体。我们表明类别理论提供了在各个级别上统一处理本体对齐所需的强大抽象:语义,语言设计,推理和工具。我们提出的一般表示和推理框架包括:(1)逻辑系统的抽象概念,由逻辑语法和模型理论组成,基于具有特定于对齐方式的附加功能的机构扩展,(2)声明性语言基于并改进分布式本体论,模型和规范语言DOL,指定本体论和对齐网络,并独立控制本地本体论和复杂的对齐关系,(3)对齐逻辑异构本体的可能性,以及(4)通过使用不同语义的统一本体网络,为全局推理提供通用证明支持。特别是,我们展示了如何使用DOL语言构造将Zimmermann和Euzenat的三种语义统一,如实地表示出来,方法是将它们完善为四种不同的语义:简单,集成(通用和包含)和上下文化。最后,我们讨论了Ontohub / HETS工具系统中DOL对齐功能的实现。

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