高阶壳中的平滑双射投影

IF 7.8 1区 计算机科学 Q1 COMPUTER SCIENCE, SOFTWARE ENGINEERING ACM Transactions on Graphics Pub Date : 2024-07-19 DOI:10.1145/3658207
Shibo Liu, Yang Ji, Jianzhi Guo, Ligang Liu, Xiao-Ming Fu
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引用次数: 0

摘要

我们提出了一种名为 "高阶壳 "的新结构,它由一组三角形棱柱组成。每个三角形棱柱由三个贝塞尔三角形(上、中、下)和三个侧表面包围,每个侧表面都是从双线性表面修剪而来。此外,我们还定义了一个连续矢量场,用于在外壳内部的两个表面之间平滑、双向地转移属性。由于高阶壳有几个硬性构造约束,我们采用内点策略为输入网格稳健地自动构造高阶壳。具体来说,该策略从厚度较小的有效线性壳开始。然后,对外壳进行优化,直到达到指定厚度,并通过显式检查确保始终满足约束条件。我们在 8300 多个模型上对我们的方法进行了广泛测试,证明了它的稳健性和性能。与最先进的方法相比,我们的双投影法更加平滑,外壳和输入网格之间的空间更加均匀。
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Smooth Bijective Projection in a High-order Shell
We propose a new structure called a higher-order shell, which is composed of a set of triangular prisms. Each triangular prism is enveloped by three Bézier triangles (top, middle, and bottom) and three side surfaces, each of which is trimmed from a bilinear surface. Moreover, we define a continuous vector field to smoothly and bijectively transfer attributes between two surfaces inside the shell. Since the higher-order shell has several hard construction constraints, we apply an interior-point strategy to robustly and automatically construct a high-order shell for an input mesh. Specifically, the strategy starts from a valid linear shell with a small thickness. Then, the shell is optimized until the specified thickness is reached, where explicit checks ensure that the constraints are always satisfied. We extensively test our method on more than 8300 models, demonstrating its robustness and performance. Compared to state-of-the-art methods, our bijective projection is smoother, and the space between the shell and input mesh is more uniform.
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来源期刊
ACM Transactions on Graphics
ACM Transactions on Graphics 工程技术-计算机:软件工程
CiteScore
14.30
自引率
25.80%
发文量
193
审稿时长
12 months
期刊介绍: ACM Transactions on Graphics (TOG) is a peer-reviewed scientific journal that aims to disseminate the latest findings of note in the field of computer graphics. It has been published since 1982 by the Association for Computing Machinery. Starting in 2003, all papers accepted for presentation at the annual SIGGRAPH conference are printed in a special summer issue of the journal.
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