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Shape Modification of B-Spline Surfaces Based on Rigid Frame via Geometric Constraint Optimization

机译:基于刚性约束的几何约束优化B样条曲面的形状修改

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Space deformation is an important tool in the field of computer graphics and geometric modeling. In this paper, a new method based on rigid frame in FEM about shape modification of B-spline surface is presented. Firstly, rigid frame model of the surface is established according to its control mesh. Then, boundary conditions such as hinge and fix are imposed on selected nodes. Finally, after geometric constraints including point, normal vector and curve constraints are specified interactively, control vertices of original surface are computed via geometric constraint optimization so that the modified surface can meet some given geometric constraints. Two optimization objectives are proposed: One is based on minimizing external loads, and the other is based on minimizing displacement of nodes. The experimental results show that the proposed approach is simple, intuitive and applicable for CAD systems.
机译:空间变形是计算机图形和几何建模领域的重要工具。本文介绍了一种基于FEM刚性框架的新方法,其关于B样条表面的形状改性。首先,根据其控制网格建立表面的刚性框架模型。然后,施加在所选节点上的边界条件,例如铰链和固定。最后,在包括点的几何约束之后,以交互方式指定正常的载体和曲线约束,通过几何约束优化计算原始表面的控制顶点,使得修改的表面可以满足一些给定的几何约束。提出了两个优化目标:一个是基于最小化外部负载,另一个是基于最小化节点的位移。实验结果表明,该方法简单,直观,适用于CAD系统。

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