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Ontology-Based Schema to Support Maintenance Knowledge Representation With a Case Study of a Pneumatic Valve

机译:基于本体的架构,以气动阀为例,支持维护知识表示

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This paper proposes a methodology for knowledge representation using ontology concepts. We employ an ontology-based schema to overcome the problems of heterogeneity and inconsistency in maintenance records, which are attributable to abbreviations, noisy data, nongeneric data structures, and ambiguous technical words in textual maintenance records. Our methodology employs a bond graph model (BGM) to produce a function structure of equipment related to fault propagation in part-component levels. Our method combines OWL-Lite/RDF and the ISO 14224 and ISO 15926 international standards in order to obtain a generic system-level representation model. Our approach also constructs transparent cause-effect knowledge, which facilitates interpretation and computer conversion using ISO 14224 and ISO 15926. The web ontology language (OWL) and resource description framework (RDF) are used to convert the generic human-readable interpretation into a standard computer-readable representation, thereby generating a knowledge base with maximum shareability and accessibility. We applied the methodology to a typical pneumatic valve. The results show that BGM can cross-link the identified words and the domain-specific logic to obtain the function structure of an object with causality inference, as well as enriching semantic extraction based on the context of a maintenance report, which improves the interpretation and computer conversion. Using OWL/RDF, actions such as interexchange, retrieval, and storage are possible for fault diagnosis applications in a multidisciplinary environment. Our method provides a generic technical understanding, which enriches semantic extraction and knowledge discovery in a typical maintenance report.
机译:本文提出了一种使用本体概念进行知识表示的方法。我们采用基于本体的架构来克服维护记录中的异质性和不一致的问题,这些问题可归因于文本维护记录中的缩写词,嘈杂的数据,非通用数据结构以及模棱两可的技术词。我们的方法采用键合图模型(BGM)来生成与零件级故障传播相关的设备功能结构。我们的方法结合了OWL-Lite / RDF和ISO 14224和ISO 15926国际标准,以获得通用的系统级表示模型。我们的方法还构造了透明的因果知识,从而有助于使用ISO 14224和ISO 15926进行解释和计算机转换。使用网络本体语言(OWL)和资源描述框架(RDF)将通用的人类可读解释转换为标准计算机可读表示,从而生成具有最大可共享性和可访问性的知识库。我们将该方法应用于典型的气动阀。结果表明,BGM可以将识别出的单词和特定领域的逻辑进行交叉链接,从而获得具有因果关系推断的对象的功能结构,并根据维护报告的上下文丰富语义提取,从而改善了解释和计算机转换。使用OWL / RDF,可以在多学科环境中对故障诊断应用程序进行诸如相互交换,检索和存储之类的操作。我们的方法提供了一种通用的技术知识,可以在典型的维护报告中丰富语义提取和知识发现。

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