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Filling N-Sided Holes With Trimmed B-Spline Surfaces Based on Energy-Minimization Method

机译:基于能量最小化方法的修整B样条曲面填充N边孔

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Using a trimmed rectangular B-Spline surface to fill an n-sided hole is a much desired operation in computer aided design (CAD), but few papers have addressed this issue. Based on an energy-minimization or variational B-Spline technique, the paper presents the technique of using one single trimmed rectangular B-Spline surface to fill an n-sided hole. The method is efficient and robust, and takes a fraction of a second to fill n-sided holes with high-quality waterproof B-Spline surfaces under complex constraints. As the foundation of filling n-sided holes, the paper also presents the framework and addresses the key issues on variational B-Spline technique. Without any precalculation, the variational B-Spline technique discussed in this paper can solve virtually any B-Spline surface with up to 20,000 control points in real time, which is much more efficient and powerful than previous work in the variational B-Spline field. Moreover, the result is accurate and satisfies CAD systems' high-precision requirements.
机译:在计算机辅助设计(CAD)中,使用修整的矩形B样条曲面填充n边的孔是非常需要的操作,但是很少有论文解决了这个问题。基于能量最小化或变化的B样条曲线技术,本文提出了一种使用单个修剪的矩形B样条曲线表面填充n边孔的技术。该方法高效且可靠,在复杂的约束下,只需不到一秒钟的时间即可用高质量的防水B样条曲面填充n侧孔。作为填充n边孔的基础,本文还提出了框架并解决了变B样条技术的关键问题。无需任何预先计算,本文中讨论的变分B样条曲线技术几乎可以实时解决多达20,000个控制点的任何B样条曲线表面,比变分B样条曲线领域中的先前工作效率更高,功能更强大。而且,结果是准确的,并且满足CAD系统的高精度要求。

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