将阀门设计标准转化为可机器读取的模块化知识库,实现设备选型自动校验。
Machine-interpretable Engineering Design Standards for Valve Specification
- 用建模模式将标准文本与表格转为模块化本体
- 基于国际标准构建可交换的语义资产模型
- 适合标准组织与工业数字化转型团队
工程设计依赖技术规范并需符合标准,但产品规格、数据表和设计标准仍以文档为主,数字化进程缓慢。本文展示如何将工程设计标准中的信息转化为模块化、可复用、机器可读的本体,并应用于工厂设计与设备选型的质量保证。通过建模模式,将管道、材料及阀门设计相关的国际标准文本与常用表格内容转化为模块化本体,采用符合W3C标准的格式存储,且与顶层本体ISO DIS 23726-3: 工业数据本体(IDO)对齐,确保互操作性。在阀门选型流程中测试这些本体:将阀门实例化为语义资产模型中的个体,并关联其所在位置的环境条件。创建‘功能位置标签’作为OWL个体,成为预定义的阀门数据表(VDS)中指定阀门的实例;同样创建制造商产品类型的实例。该方法支持自动验证特定VDS是否符合相关行业标准。结合语义推理与可执行设计规则,还可判断产品类型是否满足阀门规格。基于IDO的共享、可复用模块化本体,使语义推理可用于设备选型过程,展示了标准组织向数字化智能标准转型的潜力。
原文摘要 · Abstract (English)
Engineering design processes use technical specifications and must comply with standards. Product specifications, product type data sheets, and design standards are still mainly document-centric despite the ambition to digitalize industrial work. In this paper, we demonstrate how to transform information held in engineering design standards into modular, reusable, machine-interpretable ontologies and use the ontologies in quality assurance of the plant design and equipment selection process. We use modelling patterns to create modular ontologies for knowledge captured in the text and in frequently referenced tables in International Standards for piping, material and valve design. These modules are exchangeable, as stored in a W3C compliant format, and interoperable as they are aligned with the top-level ontology ISO DIS 23726-3: Industrial Data Ontology (IDO). We test these ontologies, created based on international material and piping standards and industry norms, on a valve selection process. Valves are instantiated in semantic asset models as individuals along with a semantic representation of the environmental condition at their location on the asset. We create "functional location tags" as OWL individuals that become instances of OWL class Valve Data Sheet (VDS) specified valves. Similarly we create instances of manufacturer product type. Our approach enables automated validation that a specific VDS is compliant with relevant industry standards. Using semantic reasoning and executable design rules, we also determine whether the product type meets the valve specification. Creation of shared, reusable IDO-based modular ontologies for design standards enables semantic reasoning to be applied to equipment selection processes and demonstrates the potential of this approach for Standards Bodies wanting to transition to digitized Smart Standards.
Thank you to arXiv for use of its open access interoperability. PaperDance 不是 arXiv 官方产品;中文卡片由大模型生成,请以原文为准。