Extracting Semantic Subgraphs to Capture the Real Meanings of Ontology Elements

IF 5.2 1区 计算机科学 Q1 COMPUTER SCIENCE, INFORMATION SYSTEMS Tsinghua Science and Technology Pub Date : 2010-12-01 DOI:10.1016/S1007-0214(10)70121-8
Wang Peng (汪 鹏) , Xu Baowen (徐宝文) , Zhou Yuming (周毓明)
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引用次数: 10

Abstract

An element may have heterogeneous semantic interpretations in different ontologies. Therefore, understanding the real local meanings of elements is very useful for ontology operations such as querying and reasoning, which are the foundations for many applications including semantic searching, ontology matching, and linked data analysis. However, since different ontologies have different preferences to describe their elements, obtaining the semantic context of an element is an open problem. A semantic subgraph was proposed to capture the real meanings of ontology elements. To extract the semantic subgraphs, a hybrid ontology graph is used to represent the semantic relations between elements. An extracting algorithm based on an electrical circuit model is then used with new conductivity calculation rules to improve the quality of the semantic subgraphs. The evaluation results show that the semantic subgraphs properly capture the local meanings of elements. Ontology matching based on semantic subgraphs also demonstrates that the semantic subgraph is a promising technique for ontology applications.

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提取语义子图以获取本体元素的真实含义
一个元素可能在不同的本体论中具有异构的语义解释。因此,理解元素的真实局部含义对于查询和推理等本体操作非常有用,这些操作是语义搜索、本体匹配和关联数据分析等许多应用的基础。然而,由于不同的本体有不同的偏好来描述它们的元素,获得元素的语义上下文是一个开放的问题。提出了一种语义子图来捕获本体元素的真实含义。为了提取语义子图,使用混合本体图来表示元素之间的语义关系。然后利用基于电路模型的提取算法和新的电导率计算规则来提高语义子图的质量。评估结果表明,语义子图能够很好地捕获元素的局部含义。基于语义子图的本体匹配也证明了语义子图是一种很有前途的本体应用技术。
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CiteScore
12.10
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0.00%
发文量
2340
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