通过绘制草图和操纵标量场实现自由形式的变形

Jing Hua, Hong Qin
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引用次数: 49

摘要

本文提出了一种基于一般流动约束和隐式函数的基于标量场的自由形式变形(SFFD)技术。与传统的由参数几何和样条理论驱动的基于格的FFD相比,我们使用标量场作为嵌入空间。当标量场发生变形时,顶点也会随之移动,从而导致嵌入对象的自由变形。标量场的构造、绘制和操作都是自然和直观的。通过与SFFD紧密耦合的自适应细分和网格优化,可以实现多分辨率的自由变形,因为我们的算法可以动态地自适应地改进和改进模型,从而提高网格质量。我们还可以在嵌入式模型上执行各种约束,这使我们的技术能够保留形状特征并促进更复杂的设计。我们的系统证明了SFFD对于形状建模是非常强大和直观的。它大大增强了传统的FFD技术,并促进了更多的形状变形。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Free-form deformations via sketching and manipulating scalar fields
This paper presents a novel Scalar-field based Free-Form Deformation (SFFD) technique founded upon general flow constraints and implicit functions. In contrast to the traditional lattice-based FFD driven by parametric geometry and spline theory, we employ scalar fields as embedding spaces instead. Upon the deformation of the scalar field, the vertices will move accordingly, which result in free-form deformations of the embedded object. The scalar field construction, sketching, and manipulation are both natural and intuitive. By tightly coupling self-adaptive subdivision and mesh optimization with SFFD, versatile multi-resolution free-form deformations can be achieved because our algorithm can adaptively refine and improve the model on the fly to improve the mesh quality. We can also enforce various constraints on embedded models, which enable our technique to preserve the shape features and facilitate more sophisticated design. Our system demonstrates that SFFD is very powerful and intuitive for shape modeling. It significantly enhances traditional FFD techniques and facilitates a larger number of shape deformations.
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