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CAD-based triangulation of unordered data using trimmed NURBS models

机译:使用修剪的NURBS模型对无序数据进行基于CAD的三角剖分

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摘要

Applications in engineering manufacture, such as dimensional inspection, often require triangulation of large sets of measured 3D data. The CAD models of relevant complex parts are usually defined using trimmed NURBS (non-uniform rational B-spline). With such situations in mind, the paper proposes a new triangulation procedure which achieves high efficiency and robustness by utilising the CAD model as an available 2D manifold which approximates the shape of the actual part. The steps in this procedure are alignment between the data and the model, registration of the measured points to the model entities, triangulation in the R~2 domain provided by the parametric surface entities, 3D mesh improvement, stitching of mesh patches and smoothing of the final mesh. The method does not assume any prior knowledge about the point ordering and performs well in the presence of the measurement noise, while also bypassing the problems of occlusion and overlap that are commonly associated with range imaging. The performance of the proposed method was analysed in relation to some other methods using models of real engineering parts. The results are highly encouraging, leading to a conclusion that the methods is well suited to practical engineering applications.
机译:工程制造中的应用程序(例如尺寸检查)通常需要对大量测量的3D数据进行三角剖分。通常使用修整后的NURBS(非均匀有理B样条)定义相关复杂零件的CAD模型。考虑到这种情况,本文提出了一种新的三角剖分程序,该程序通过将CAD模型用作近似实际零件形状的可用2D流形,从而实现了高效率和鲁棒性。此过程中的步骤包括:数据与模型之间的对齐,将测量点注册到模型实体,由参数化表面实体提供的R〜2域中的三角剖分,3D网格改进,网格补丁的拼接以及网格的平滑处理。最终网格。该方法不假设有关点排序的任何先验知识,并且在存在测量噪声的情况下表现良好,同时还绕过了通常与范围成像相关的遮挡和重叠问题。相对于其他一些使用实际工程零件模型的方法,分析了该方法的性能。结果令人鼓舞,得出的结论是该方法非常适合实际工程应用。

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