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Ontology Driven Approach to Generate Distributed Automation Control From Substation Automation Design

机译:本体驱动方法从变电站自动化设计中产生分布式自动化控制

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This paper proposes a method for the automatic generation of smart-grid automation systems software from specifications that includes physical system layout and domain-specific functional “recipes.” The generated software has component organization and implements a decentralized approach to smart grid control, which reduces complexity of automation systems design and modification. The proposed method relies on synergies of two industrial standards IEC 61850 and IEC 61499, which are used to represent a part of the specification and the resulting software model, respectively. Then, the specification model is created in a form of ontology and the generation is based on ontology transformation. The proposed method requires an extension to the Semantic Web Rule Language (SWRL) to support the change of an ontology axioms set for the purpose of ontology transformation. The proposed transformation language, called extended SWRL, is introduced and illustrated in use. The result shows the viability of eSWRL as an ontology transformation language when demonstrated in a power distribution case study system.
机译:本文提出了一种从规范自动生成智能电网自动化系统软件的方法,该规范包括物理系统布局和特定领域的功能“配方”。生成的软件具有组件结构,并实现了智能电网控制的分散式方法,从而降低了自动化系统设计和修改的复杂性。所提出的方法依赖于两个工业标准IEC 61850和IEC 61499的协同作用,这两个工业标准分别用于表示规范的一部分和所得的软件模型。然后,以本体的形式创建规范模型,并且基于本体转换生成该规范模型。所提出的方法需要对语义网规则语言(SWRL)的扩展,以支持出于本体转换目的而改变本体公理集。介绍并说明了所提议的转换语言,称为扩展SWRL。结果表明,当在配电案例研究系统中进行演示时,eSWRL作为本体转换语言的可行性。

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