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Maintaining integrity constraints in semantic web.

机译:维护语义网中的完整性约束。

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摘要

As an expressive knowledge representation language for Semantic Web, Web Ontology Language (OWL) plays an important role in areas like science and commerce. The problem of maintaining integrity constraints arises because OWL employs the Open World Assumption (OWA) as well as the Non-Unique Name Assumption (NUNA). These assumptions are typically suitable for representing knowledge distributed across the Web, where the complete knowledge about a domain cannot be assumed, but make it challenging to use OWL itself for closed world integrity constraint validation. Integrity constraints (ICs) on ontologies have to be enforced; otherwise conflicting results would be derivable from the same knowledge base (KB). The current trends of incorporating ICs into OWL are based on its query language SPARQL, alternative semantics, or logic programming. These methods usually suffer from limited types of constraints they can handle, and/or inherited computational expensiveness.;This dissertation presents a comprehensive and efficient approach to maintaining integrity constraints. The design enforces data consistency throughout the OWL life cycle, including the processes of OWL generation, maintenance, and interactions with other ontologies. For OWL generation, the Paraconsistent model is used to maintain integrity constraints during the relation- al database to OWL translation process. Then a new rule-based language with set extension is introduced as a platform to allow users to specify constraints, along with a demonstration of 18 commonly used constraints written in this language. In addition, a new constraint maintenance system, called Jena2Drools, is proposed and implemented, to show its effectiveness and efficiency. To further handle inconsistencies among multiple distributed ontologies, this work constructs a framework to break down global constraints into several sub-constraints for efficient parallel validation.
机译:作为语义Web的一种表达性知识表示语言,Web本体语言(OWL)在科学和商业等领域起着重要的作用。由于OWL使用开放世界假设(OWA)和非唯一名称假设(NUNA),因此出现了维护完整性约束的问题。这些假设通常适用于表示分布在Web上的知识,其中无法假设有关域的完整知识,但是使用OWL本身进行封闭世界完整性约束验证非常困难。必须对本体进行完整性约束(IC);否则,可能会从相同的知识库(KB)中得出冲突的结果。将IC集成到OWL中的当前趋势是基于其查询语言SPARQL,替代语义或逻辑编程。这些方法通常只能处理有限类型的约束,和/或具有继承性的计算昂贵性。本文为维护完整性约束提供了一种全面而有效的方法。该设计在整个OWL生命周期(包括OWL生成,维护和与其他本体的交互)中增强了数据一致性。对于OWL生成,Paraconsistent模型用于在关系数据库到OWL转换过程中维护完整性约束。然后,引入了具有设置扩展名的新的基于规则的语言作为平台,以允许用户指定约束,并演示了用这种语言编写的18种常用约束。此外,提出并实施了一种新的约束维护系统Jena2Drools,以显示其有效性和效率。为了进一步处理多个分布式本体之间的不一致,此工作构建了一个框架,用于将全局约束分解为几个子约束,以进行有效的并行验证。

著录项

  • 作者

    Fang, Ming.;

  • 作者单位

    Georgia State University.;

  • 授予单位 Georgia State University.;
  • 学科 Computer Science.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 111 p.
  • 总页数 111
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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