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Reverse engineering of a NURBS surface from digitized points subject to boundary conditions

机译:根据边界条件从数字化点对NURBS曲面进行逆向工程

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摘要

Reverse engineering is an approach for constructing a CAD model from a physical part through dimensional measurement and surface modeling. In most applications, the creation of a NURBS surface usually is not a stand-alone project. The surface that fits the data points must also satisfy boundary conditions, such as positional, normal and other practical boundary conditions. In order to obtain surfaces subject to boundary conditions, a method based on a new algorithm for fitting NURBS surfaces to data points is presented in this paper. The proposed method uses chosen data points as control points to construct initial NURBS surfaces and then modifies them using minimization of deviation under boundary condition constraints (positional, normal and other practical boundary condition constraints), solved by the method of Lagrange multipliers.
机译:逆向工程是一种通过尺寸测量和表面建模从物理零件构造CAD模型的方法。在大多数应用程序中,创建NURBS曲面通常不是一个独立的项目。适合数据点的曲面还必须满足边界条件,例如位置,法线和其他实际边界条件。为了获得受边界条件约束的曲面,本文提出了一种基于新算法的将NURBS曲面拟合到数据点的方法。所提出的方法使用选定的数据点作为控制点来构造初始NURBS曲面,然后在边界条件约束(位置,法线和其他实际边界条件约束)下使用最小化偏差对其进行修改,并通过拉格朗日乘子法求解。

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