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Resolving Non-Uniqueness in Design Feature Histories

机译:在设计特征历史中解决非唯一性

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Nearly all major commercial computer-aided design systems have adopted a feature-based design approach to solid modeling. Models are created via a sequence of operations which apply design features to incremental versions of a design model. Even surfacing, free-form surface shaping, and deformation operations are internally represented in modeling systems as features in a "history tree" that generates the final design. Much in the same manner that Constructive Solid Geometry (CSG) trees for an individual model can be non-unique, these design feature histories for solid models might be ordered in a number of ways and still result in the same final geometry and topology. We formulate this problem symbolically and present geometric reasoning techniques to generate a canonical form for certain classes of design feature histories. We define this representation as a Model Dependency Graph (MDG) and show how it can be used as a basis for developing techniques for managing databases of solid models. Using the MDG, we introduce algorithms that can assess the similarity of solid models based on design features. We believe these techniques can be used to build intelligent CAD knowledge-bases and to identify meaningful part families from large sets of designs. Lastly, we describe experimental results and performance metrics for our approach.
机译:几乎所有主要的商用计算机辅助设计系统都采用了基于特征的设计方法来实现了实验性的设计方法。模型是通过应用设计特征的一系列操作来创建的,以增量设计模型的增量版本。甚至浮出表面,自由形状表面整形和变形操作在建模系统中,作为生成最终设计的“历史树”中的特征。与个人模型的建设性实心几何(CSG)树相同的方式可以是非唯一的,可以以多种方式订购实体模型的这些设计特征历史,并且仍然导致相同的最终几何和拓扑。我们象征性地制定了这个问题,并呈现几何推理技术,用于为某些类设计特征历史生成规范形式。我们将此表示作为模型依赖性图(MDG)定义,并显示如何将其用作开发用于管理实体模型数据库的技术的基础。使用MDG,我们介绍了可以根据设计特征评估实体模型的相似性的算法。我们认为这些技术可用于建立智能CAD知识库,并从大型设计中识别有意义的部件。最后,我们描述了我们的方法的实验结果和性能指标。

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