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Design of composite structures using knowledge-based and case-based reasoning.

机译:使用基于知识和案例的推理设计复合结构。

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摘要

A method of using knowledge based and case based reasoning to assist designers during conceptual design tasks of composite structures was proposed. The cooperative use of heuristics, procedural knowledge, and previous similar design cases suggests a potential reduction in design cycle time and ultimately product lead time. The hypothesis of this work is that the design process of composite structures can be improved by using Case-Based Reasoning (CBR) and Knowledge-Based (KB) reasoning in the early design stages. The technique facilitates the gathering of disparate information into one location that is easily and readily available. The method suggests that the inclusion of downstream life-cycle issues into the conceptual design phase reduces potential of defective, and sub-optimal composite structures. Three industry experts were interviewed extensively. The experts provided design rules, previous design cases, and test problems. A Knowledge Based Reasoning system was developed using the CLIPS (C Language Interpretive Procedural System) environment and a Case Based Reasoning System was developed using the Design MUSE (Memory Utility For Sharing Experiences) environment. A Design Characteristic State (DCS) was used to document the design specifications, constraints, and problem areas using attribute-value pair relationships. The DCS provided consistent design information between the knowledge base and case base. Results indicated that the use of knowledge based and case based reasoning provided a robust design environment for composite structures. The knowledge base provided design guidance from well defined rules and procedural knowledge. The case base provided suggestions on design and manufacturing techniques based on previous similar designs and warnings of potential problems and pitfalls. The case base complemented the knowledge base and extended the problem solving capability beyond the existence of limited well defined rules. The findings indicated that the technique is most effective when used as a design aid and not as a tool to totally automate the composites design process. Other areas of application and implications for future research are discussed.
机译:提出了一种在组合结构的概念设计任务中使用基于知识和案例推理的方法来协助设计人员的方法。启发式,过程知识和以前的类似设计案例的协同使用表明设计周期时间和最终产品交付时间的潜在减少。这项工作的假设是,在设计的早期阶段,可以使用基于案例的推理(CBR)和基于知识的(KB)推理来改善复合结构的设计过程。该技术有助于将不同的信息收集到一个位置,该位置易于使用。该方法表明,将下游生命周期问题纳入概念设计阶段可减少存在缺陷的次佳复合结构的可能性。采访了三位行业专家。专家提供了设计规则,以前的设计案例和测试问题。使用CLIPS(C语言解释性程序系统)环境开发了基于知识的推理系统,使用Design MUSE(用于共享经验的内存实用程序)环境开发了基于案例的推理系统。设计特征状态(DCS)用于使用属性-值对关系记录设计规范,约束和问题区域。 DCS在知识库和案例库之间提供了一致的设计信息。结果表明,基于知识的推理和基于案例的推理为复合结构提供了可靠的设计环境。知识库提供了来自定义明确的规则和过程知识的设计指导。该案例库根据以前的类似设计以及潜在问题和陷阱的警告,提供了有关设计和制造技术的建议。案例库补充了知识库,并扩大了解决问题的能力,超出了定义明确的有限规则的范围。研究结果表明,该技术在用作设计辅助工具而不是使复合材料设计过程完全自动化的工具时最有效。讨论了其他应用领域以及对未来研究的意义。

著录项

  • 作者

    Lambright, Jonathan Paul.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 1996
  • 页码 311 p.
  • 总页数 311
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

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