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Consistent mesh partitioning and skeletonisation using the shape diameter function

机译:使用形状直径功能进行一致的网格划分和骨架化

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摘要

Mesh partitioning and skeletonisation are fundamental for many computer graphics and animation techniques. Because of the close link between an object's skeleton and its boundary, these two problems are in many cases complementary. Any partitioning of the object can assist in the creation of a skeleton and any segmentation of the skeleton can infer a partitioning of the object. In this paper, we consider these two problems on a wide variety of meshes, and strive to construct partitioning and skeletons which remain consistent across a family of objects, not a single one. Such families can consist of either a single object in multiple poses and resolutions, or multiple objects which have a general common shape. To achieve consistency, we base our algorithms on a volume-based shape-function called the shape-diameter-function (SDF), which remains largely oblivious to pose changes of the same object and maintains similar values in analogue parts of different objects. The SDF is a scalar function defined on the mesh surface; however, it expresses a measure of the diameter of the object's volume in the neighborhood of each point on the surface. Using the SDF we are able to process and manipulate families of objects which contain similarities using a simple and consistent algorithm: consistently partitioning and creating skeletons among multiple meshes.
机译:网格划分和骨架化是许多计算机图形和动画技术的基础。由于对象的骨骼与其边界之间的紧密联系,因此这两个问题在许多情况下是互补的。对象的任何分区都可以帮助创建骨架,并且骨架的任何分段都可以推断对象的分区。在本文中,我们在各种各样的网格上考虑了这两个问题,并努力构造在一系列对象(而不是单个对象)上保持一致的分区和骨架。这样的族可以由具有多个姿势和分辨率的单个对象组成,也可以由具有通用形状的多个对象组成。为了实现一致性,我们将算法基于称为体积直径函数(SDF)的基于体积的形状函数,该函数在很大程度上忽略了同一对象的姿势变化,并且在不同对象的模拟部分中保持相似的值。 SDF是定义在网格表面上的标量函数;但是,它表示物体在表面上每个点附近的体积直径的度量。使用SDF,我们能够使用简单且一致的算法来处理和操纵包含相似性的对象系列:在多个网格之间一致地划分和创建骨架。

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