TUpper:标准中的顶级本体

Appl. Ontology Pub Date : 2022-02-01 DOI:10.3233/ao-220263
M. Grüninger, Yi Ru, Jona Thai
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引用次数: 4

摘要

传统上,上层本体论是由一种方法产生的,在这种方法中,跨一组领域的公共概念可以在一般级别上公理化。其基本原理是,跨领域的重用是通过来自上层本体的一般概念的专门化来支持的。类似地,本体之间的语义集成将通过它们专门化的一般概念来实现。塔珀本体遵循传统上层本体范式的另一种方法(称为横向方法)。与将上层本体视为以分类学为中心的整体公理化不同,横向方法认为上层本体是由通用本体组成的模块化本体,涵盖了与时间、过程和空间相关的概念。因此,TUpper由一组泛型本体组成,每个泛型本体公理化了一组特定的泛型概念(例如,与时间、过程和空间相关的类和关系)。TUpper本体被设计为一个顶级本体,它包含来自现有国际标准的本体的模块。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
TUpper: A top level ontology within standards
Upper ontologies have traditionally arisen from the approach in which concepts that are common across a set of domains can be axiomatized at a general level. The rationale is that reuse across domains is to be supported through specialization of the general concepts from an upper ontology. Similarly, semantic integration between ontologies is to be achieved through the general concepts they specialize. The TUpper Ontology follows an alternative approach (referred to as the sideways approach) to the conventional upper ontology paradigm. Rather than think of an upper ontology as a monolithic axiomatization centred on a taxonomy, the sideways approach considers an upper ontology to be a modular ontology composed of generic ontologies that cover concepts including those related to time, process, and space. TUpper is therefore composed of a set of generic ontologies, and each generic ontology axiomatizes a particular set of generic concepts (e.g., the classes and relations relevant for time, process, and space). The TUpper Ontology is designed as a top-level ontology that contains modules from the ontologies within existing international standards.
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