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A Product Design Method Based on Integrated Geometric and Rule-based Reasoning

机译:基于集成几何和基于规则推理的产品设计方法

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Though rule-based reasoning system is easy to create and convenient to extend, it is not flexible because of the demand for precise matching. Geometric reasoning system can obtain engineering semantic from CAD model and connect geometric topology with design knowledge, but it can not drive product design directly. Utilizing the complementary of rule-based reasoning and geometric reasoning, a product design method based on integrated geometric and rule-based reasoning is presented. The method can standardize the expression of design scheme which is from geometric reasoning, and dock seamlessly design scheme and input condition in rule-based reasoning system. Furthermore, the result of rule-based reasoning can drive product design directly. The operation of human-computer interaction and designer's experience needed are decreased greatly. Digital target in locater is significant to harmonize aircraft tie-in, there are different types in it, and the amount of it is huge, so its design process is complicated and fussy. On the basis of the method, a rapid design software package for locator digital target design is developed and has been applied in aircraft assembly tooling design. The application has proved the method can improve design efficiency, standardization and intelligence.
机译:尽管基于规则的推理系统易于创建且易于扩展,但由于需要精确匹配,因此它并不灵活。几何推理系统可以从CAD模型中获得工程语义,并将几何拓扑与设计知识联系起来,但不能直接驱动产品设计。利用基于规则的推理和几何推理的互补,提出了一种基于几何和规则的集成推理的产品设计方法。该方法可以标准化来自几何推理的设计方案的表达,并将设计方案和输入条件无缝对接在基于规则的推理系统中。此外,基于规则的推理的结果可以直接驱动产品设计。人机交互的操作和设计人员所需的经验大大减少了。定位器中的数字目标对协调飞机的配合很重要,它的种类繁多,数量巨大,设计过程复杂繁琐。在此方法的基础上,开发了一种用于定位器数字目标设计的快速设计软件包,并将其应用于飞机装配工具设计中。应用证明该方法可以提高设计效率,标准化和智能化。

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