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ANEW MULTI-LEVEL ATTRIBUTED GRAPH BASED SHAPE MATCHING APPROACH TO COMPLEX TEMPLATE DESIGN FEATURE RECOGNITION

机译:基于新的多层次属性图形状匹配方法的复杂模板设计特征识别

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Some 3D complex shapes such as stair and compound-hole in engineering design always contains various geometric face types, adjacent geometric constraints and typical design semantics. These 3D shapes can be defined as template design features because they are frequently reused for synchronous shape modeling to greatly accelerate design and analysis process. To recognize the complex template design features, we present a new multi-level attributed graph based shape matching approach. The core idea is the Multi-level Attributed Graph (MLAG), which describes not only the geometry face types such as plane and the geometry relationships between two adjacent faces such as tangency that are usually used for 3D shape retrieval and manufacturing feature recognition, but also the design semantic features among multiple adjacent faces even non-adjacent faces such as boss. Such design semantic feature will greatly benefit MLAG matching process, so that a complex template design feature can be efficiently recognized for design modification. Finally, two experiments with some kinds of template feature recognition are also shown to demonstrate the effectiveness of the proposed method.
机译:工程设计中的某些3D复杂形状(例如楼梯和复合孔)始终包含各种几何面类型,相邻的几何约束和典型的设计语义。这些3D形状可以定义为模板设计功能,因为它们经常被重复用于同步形状建模,从而大大加快了设计和分析过程。为了识别复杂的模板设计功能,我们提出了一种新的基于多层属性图的形状匹配方法。核心思想是多级属性图(MLAG),它不仅描述通常用于3D形状检索和制造特征识别的几何面类型(例如平面)和两个相邻面之间的几何关系(例如相切),而且甚至在多个相邻面,甚至是非相邻面(例如老板)之间的设计语义特征。这样的设计语义特征将极大地有利于MLAG匹配过程,从而可以有效地识别复杂的模板设计特征以进行设计修改。最后,还进行了两种带有某些模板特征识别的实验,以证明该方法的有效性。

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