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CAD-driven Pattern Recognition in Reverse Engineered Models

机译:反向工程模型中的CAD驱动模式识别

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摘要

Today, it has become frequent and relatively easy to digitize the surface of 3D objects and then to reconstruct a combination of geometric primitives such as planes, cylinders, spheres or cones. However, the given reconstruction contains only geometry, no information of a semantic nature used during the design process is included. In this paper, we present a robust method to recognize specific geometric structures which are not explicitly present in an object, such as features and repetitions. These are known as patterns, which are used in the CAD modeling process. Moreover, the digitization of an object often leads to various inaccuracies, and therefore inaccurate extracted primitives. We also demonstrate how recognized patterns can be useful as an application in beautification, which consists of the adjustment of primitive parameters to satisfy geometrical relations such as parallelism and concentricity. Our objective is to design a fast and automatic method, which is seldom seen in reverse engineering. We show the efficiency and robustness of our method through experimental results applied on reverse engineered 3D meshes.
机译:今天,它已经变得频繁,相对容易地数字化3D对象的表面,然后重建了几何基元的组合,例如平面,汽缸,球形或锥体。然而,给定的重建仅包含几何形状,没有包括在设计过程中使用的语义性质的信息。在本文中,我们介绍了一种稳定的方法来识别不明确存在于物体中的特定几何结构,例如特征和重复。这些称为模式,用于CAD建模过程中。此外,物体的数字化通常导致各种不准确性,因此不准确提取的基元。我们还证明了认可的模式如何可用作美化的应用,这包括调整原始参数,以满足平行和同心度等几何关系。我们的目标是设计一种快速和自动的方法,在逆向工程中很少见。我们通过在逆向工程3D网眼上应用的实验结果来展示我们方法的效率和稳健性。

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