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首页> 外文期刊>Logica Universalis >Carnap, Goguen, and the Hyperontologies: Logical Pluralism and Heterogeneous Structuring in Ontology Design
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Carnap, Goguen, and the Hyperontologies: Logical Pluralism and Heterogeneous Structuring in Ontology Design

机译:Carnap,Goguen和超本体论:本体设计中的逻辑多元性和异构结构

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This paper addresses questions of universality related to ontological engineering, namely aims at substantiating (negative) answers to the following three basic questions: (i) Is there a ‘universal ontology’?, (ii) Is there a ‘universal formal ontology language’?, and (iii) Is there a universally applicable ‘mode of reasoning’ for formal ontologies? To support our answers in a principled way, we present a general framework for the design of formal ontologies resting on two main principles: firstly, we endorse Rudolf Carnap’s principle of logical tolerance by giving central stage to the concept of logical heterogeneity, i.e. the use of a plurality of logical languages within one ontology design. Secondly, to structure and combine heterogeneous ontologies in a semantically well-founded way, we base our work on abstract model theory in the form of institutional semantics, as forcefully put forward by Joseph Goguen and Rod Burstall. In particular, we employ the structuring mechanisms of the heterogeneous algebraic specification language HetCasl for defining a general concept of heterogeneous, distributed, highly modular and structured ontologies, called hyperontologies. Moreover, we distinguish, on a structural and semantic level, several different kinds of combining and aligning heterogeneous ontologies, namely integration, connection, and refinement. We show how the notion of heterogeneous refinement can be used to provide both a general notion of sub-ontology as well as a notion of heterogeneous equivalence of ontologies, and finally sketch how different modes of reasoning over ontologies are related to these different structuring aspects.
机译:本文讨论了与本体工程相关的普遍性问题,即旨在证实以下三个基本问题的(否定)答案:(i)是否存在“通用本体论”?,(ii)是否存在“通用形式本体论语言” ;以及(iii)正式本体是否存在普遍适用的“推理模式”?为了以原则性的方式支持我们的答案,我们提出了一个基于两个主要原则的形式本体设计的通用框架:首先,我们通过将逻辑异质性(即使用)的概念放在中心位置来认可鲁道夫·卡尔纳普的逻辑宽容原则一个本体设计中的多种逻辑语言的组合。其次,为了以语义学上有据可依的方式构造和组合异构本体,我们以约瑟夫·冈根和罗德·伯斯托尔的有力主张为基础,以制度语义学的形式,基于抽象模型理论开展工作。特别地,我们采用异构代数规范语言HetCasl的结构化机制来定义异构,分布式,高度模块化和结构化本体(称为超本体)的一般概念。此外,我们在结构和语义级别上区分几种不同类型的组合和排列异构本体,即集成,连接和细化。我们将展示异构精炼的概念如何用于提供子本体的一般概念以及本体的异构等价概念,并最终勾勒出本体论的不同推理模式如何与这些不同的结构方面相关。

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