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Ribbon-based transfinite surfaces

机译:基于功能区的超限曲面

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摘要

One major issue in CAGD is to model complex objects using free-form surfaces of general topology. A natural approach is curvenet-based design, where designers directly create and modify feature curves. These are interpolated by smoothly connected, multi-sided patches, which can be represented by transfinite surfaces, defined as a combination of side interpolants or ribbons. A ribbon embeds Hermite data, i.e., prescribed positional and cross-derivative functions along boundary curves. The paper focuses on two transfinite schemes: the first is an enhanced and extended variant of a multi-sided generalization of the classical Coons patch (Varady et al., 2011); the second one is based on a new concept of combining doubly curved composite ribbons, each one interpolating three adjacent sides. Main contributions include various ribbon parameterizations that surpass former methods in quality and computational efficiency. It is proven that these surfaces smoothly interpolate the prescribed ribbon data. Both formulations are based on non-regular convex polygonal domains and distance-based, rational blending functions. A few examples illustrate the results.
机译:CAGD中的一个主要问题是使用通用拓扑的自由曲面来对复杂对象建模。一种自然的方法是基于Curvenet的设计,设计人员可以直接创建和修改特征曲线。这些通过平滑连接的多面体插值进行插值,这些插值可以由定义为侧插值或色带组合的超限表面表示。功能区会沿边界曲线嵌入Hermite数据,即规定的位置和交叉导数函数。本文着重于两个超限方案:第一个是经典Coons面片的多面泛化的增强和扩展变体(Varady et al。,2011)。第二个是基于一种新概念的结合双弯曲复合带,每个带插入三个相邻的边。主要贡献包括各种功能区参数化,这些参数化在质量和计算效率上均超过了以前的方法。事实证明,这些表面可以平滑地插值指定的色带数据。两种公式都基于非规则凸多边形域和基于距离的合理混合函数。一些例子说明了结果。

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