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Shape Deformation via Interior RBF

机译:通过内部RBF进行形状变形

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摘要

We present a new framework for real-time shape deformation with local shape preservation and volume control. Given a 3D object, in any form, one would like to manipulate the object using convenient handles, so that the resulting shape is a natural variation of the given object. It is also important that the deformation is controlled, thereby enabling localized changes that do not influence nearby branches. For example, given a horse model, a movement of one of its hooves should not affect the other hooves. Another goal is the minimization of local shape distortion throughout the object. The first ingredient of our method is the use of interior radial basis functions (IRBF), where the functions are radial with respect to interior distances within the object. The second important ingredient is the reduction of local distortions by minimizing the distortion of a set of spheres placed within the object. Our method achieves the goals of convenient shape manipulation and local influence property, and improves the latest state-of-the-art cage-based methods by replacing the cage with the more flexible IRBF centers. The latter enables extra flexibility and fully automated construction, as well as simpler formulation. We also suggest the IRBF interpolation method that can extend any surface mapping to the whole subspace in a shape-aware manner.
机译:我们提出了一种具有局部形状保存和体积控制的实时形状变形新框架。给定任何形式的3D对象,人们都希望使用方便的手柄来操纵该对象,以便最终得到的形状是给定对象的自然变化。同样重要的是,控制变形,从而实现不影响附近分支的局部更改。例如,给定一匹马模型,一只蹄的运动不应影响其他蹄。另一个目标是使整个对象的局部形状变形最小化。我们方法的第一个要素是使用内部径向基函数(IRBF),其中该函数相对于对象内部的内部距离是径向的。第二个重要因素是通过最小化放置在对象内的一组球的变形来减少局部变形。我们的方法实现了方便的形状操纵和局部影响特性的目标,并通过使用更灵活的IRBF中心替换了保持架,改进了基于最新技术的保持架。后者提供了额外的灵活性和全自动构造,并且配方更简单。我们还建议使用IRBF插值方法,该方法可以以形状感知的方式将任何表面贴图扩展到整个子空间。

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