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Constraints Based Nonrigid Registration for 2D Blade Profile Reconstruction in Reverse Engineering

机译:逆向工程中基于约束的非刚性配准用于二维叶片轮廓重建

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摘要

In reverse engineering, 2D profile curve reconstruction based on cross-sectional points is a very crucial step for surface reconstruction such as lofting surface, swept surface, translational surface, and rotational surface. Unlike the traditional constrained fitting method that assumes that the cross-sectional points have been segmented in advance, and that the initial fitted curves are very close to the points, we propose a nonrigid registration method, through which a template curve can be automatically transformed and deformed to best fit the cross-sectional points. Compared with constrained fitting, non-rigid registration does not need any data preprocessing such as sorting, segmentation, and parametrization. The simulated and real examples have demonstrated the effectiveness and superiority of nonrigid registration for 2D blade profile curve reconstruction.
机译:在逆向工程中,基于截面点的2D轮廓曲线重构是曲面重构(例如放样曲面,后掠曲面,平移曲面和旋转曲面)的非常关键的步骤。与传统的约束拟合方法不同,传统的约束拟合方法假定横截面点已经预先分割,并且初始拟合曲线非常接近该点,我们提出了一种非刚性配准方法,通过该方法可以自动转换模板曲线并变形以最适合横截面点。与约束拟合相比,非刚性配准不需要任何数据预处理,例如排序,分段和参数化。仿真和真实示例已经证明了非刚性配准对于二维叶片轮廓曲线重建的有效性和优越性。

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