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Restricted Trivariate Polycube Splines for Volumetric Data Modeling

机译:体积数据建模的受限三元多元立方体样条

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This paper presents a volumetric modeling framework to construct a novel spline scheme called restricted trivariate polycube splines (RTP-splines). The RTP-spline aims to generalize both trivariate T-splines and tensor-product B-splines; it uses solid polycube structure as underlying parametric domains and strictly bounds blending functions within such domains. We construct volumetric RTP-splines in a top-down fashion in four steps: 1) Extending the polycube domain to its bounding volume via space filling; 2) building the B-spline volume over the extended domain with restricted boundaries; 3) inserting duplicate knots by adding anchor points and performing local refinement; and 4) removing exterior cells and anchors. Besides local refinement inherited from general T-splines, the RTP-splines have a few attractive properties as follows: 1) They naturally model solid objects with complicated topologies/bifurcations using a one-piece continuous representation without domain trimming/patching/merging. 2) They have guaranteed semistandardness so that the functions and derivatives evaluation is very efficient. 3) Their restricted support regions of blending functions prevent control points from influencing other nearby domain regions that stay opposite to the immediate boundaries. These features are highly desirable for certain applications such as isogeometric analysis. We conduct extensive experiments on converting complicated solid models into RTP-splines, and demonstrate the proposed spline to be a powerful and promising tool for volumetric modeling and other scientific/engineering applications where data sets with multiattributes are prevalent.
机译:本文提出了一种体积建模框架,以构建一种新的样条方案,称为受限三元多元立方体样条(RTP-splines)。 RTP样条旨在概括三元T样条和张量积B样条;它使用实体多立方体结构作为基础参数域,并严格限制此类域内的混合功能。我们通过四个步骤以自上而下的方式构造体积RTP样条:1)通过空间填充将polycube域扩展到其边界体积; 2)在边界受限的扩展域上建立B样条曲线; 3)通过添加锚点并进行局部细化来插入重复的结;和4)移除外部单元和锚。除了从一般T样条曲线继承的局部细化之外,RTP样条曲线还具有以下一些吸引人的特性:1)它们自然地使用一件式连续表示对具有复杂拓扑/分叉的实体进行建模,而无需进行域修整/修补/合并。 2)它们具有保证的半标准性,因此功能和派生评估非常有效。 3)其受限制的混合功能支持区域可防止控制点影响其他邻近领域,这些领域与当前边界保持相反。这些特征对于某些应用(例如等几何分析)是非常需要的。我们进行了将复杂的实体模型转换为RTP样条曲线的大量实验,并证明了拟议的样条曲线对于体积建模和其他具有多属性数据集的科学/工程应用程序是一个强大而有前途的工具。

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