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Intelligent planning of product assembly sequences based on spatio-temporal semantic knowledge

机译:基于时空语义知识的产品装配序列智能规划

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摘要

Purpose - The implied assembly constraints of a computer-aided design (CAD) model (e.g. hierarchical constraints, geometric constraints and topological constraints) represent an important basis for product assembly sequence intelligent planning. Assembly prior knowledge contains factual assembly knowledge and experience assembly knowledge, which are important factors for assembly sequence intelligent planning. This paper aims to improve monotonous assembly sequence planning for a rigid product, intelligent planning of product assembly sequences based on spatio-temporal semantic knowledge is proposed. Design/methodology/approach - A spatio-temporal semantic assembly information model is established. The internal data of the CAD model are accessed to extract spatio-temporal semantic assembly information. The knowledge system for assembly sequence intelligent planning is built using an ontology model. The assembly sequence for the sub-assembly and assembly is generated via attribute retrieval and rule reasoning of spatio-temporal semantic knowledge. The optimal assembly sequence is achieved via a fuzzy comprehensive evaluation. Findings - The proposed spatio-temporal semantic information model and knowledge system can simultaneously express CAD model knowledge and prior knowledge for intelligent planning of product assembly sequences. Attribute retrieval and rule reasoning of spatio-temporal semantic knowledge can be used to generate product assembly sequences. Practical implications - The assembly sequence intelligent planning example of linear motor highlights the validity of intelligent planning of product assembly sequences based on spatio-temporal semantic knowledge. Originality/value - The spatio-temporal semantic information model and knowledge system are built to simultaneously express CAD model knowledge and assembly prior knowledge. The generation algorithm via attribute retrieval and rule reasoning of spatio-temporal semantic knowledge is given for intelligent planning of product assembly sequences in this paper. The proposed method is efficient because of the small search space.
机译:目的 - 计算机辅助设计(CAD)模型(例如分层约束,几何约束和拓扑约束)的隐含组件约束代表了产品组装序列智能规划的重要依据。装配事先知识包含事实集会知识和体验集会知识,这是装配序列智能规划的重要因素。本文旨在改善基于时空语义知识的刚性产品的单调装配序列规划,智能规划产品组装序列。设计/方法/方法 - 建立了一种时空语义装配信息模型。访问CAD模型的内部数据以提取时空语义组装信息。组装序列智能规划的知识系统是使用本体模型构建的。子组件和组件的装配序列是通过特征检索和规则推理的时空语义知识生成。通过模糊综合评估实现最佳装配序列。调查结果 - 所提出的时空语义信息模型和知识系统可以同时表达CAD模型知识和产品组装序列智能规划的先验知识。空间 - 时间语义知识的属性检索和规则推理可用于生成产品装配序列。实际意义 - 线性电机的装配序列智能规划例突出了基于时空语义知识的产品组装序列智能规划的有效性。原创性/值 - 建立时空语义信息模型和知识系统,以同时表达CAD模型知识和组装先验知识。通过本文产品组装序列的智能规划,给出了通过属性检索和规则推理的生成算法。由于小搜索空间,所提出的方法是有效的。

著录项

  • 来源
    《Assembly Automation》 |2020年第5期|755-768|共14页
  • 作者单位

    School of Information and Electrical Engineering Shandong Jianzhu University Jinan China;

    School of Mechanical and Electrical Engineering Shandong Jianzhu University Jinan China;

    School of Mechanical and Electrical Engineering Shandong Jianzhu University Jinan China;

    School of Mechanical and Electrical Engineering Shandong Jianzhu University Jinan China;

    School of Mechanical and Electrical Engineering Shandong Jianzhu University Jinan China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Assembly sequence planning; Attribute retrieval; Rule reasoning; Spatio-temporal semantic knowledge model;

    机译:装配序列规划;属性检索;规则推理;时空语义知识模型;

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