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Surface Mapping Using Consistent Pants Decomposition

机译:使用一致的裤子分解进行表面贴图

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摘要

Surface mapping is fundamental to shape computing and various downstream applications. This paper develops a pants decomposition framework for computing maps between surfaces with arbitrary topologies. The framework first conducts pants decomposition on both surfaces to segment them into consistent sets of pants patches (a pants patch is intuitively defined as a genus-0 surface with three boundaries), then composes global mapping between two surfaces by using harmonic maps of corresponding patches. This framework has several key advantages over existing techniques. First, it is automatic. It can automatically construct mappings for surfaces with complicated topology, guaranteeing the one-to-one continuity. Second, it is general and powerful. It flexibly handles mapping computation between surfaces with different topologies. Third, it is flexible. Despite topology and geometry, it can also integrate semantics requirements from users. Through a simple and intuitive human-computer interaction mechanism, the user can flexibly control the mapping behavior by enforcing point/curve constraints. Compared with traditional user-guided, piecewise surface mapping techniques, our new method is less labor intensive, more intuitive, and requires no user's expertise in computing complicated surface maps between arbitrary shapes. We conduct various experiments to demonstrate its modeling potential and effectiveness.
机译:表面映射是形状计算和各种下游应用程序的基础。本文开发了一种裤子分解框架,用于计算具有任意拓扑的曲面之间的贴图。该框架首先在两个表面上进行裤子分解,以将它们分割成一致的裤子补丁集(一个裤子补丁被直观地定义为具有三个边界的genus-0曲面),然后通过使用相应补丁的调和贴图在两个表面之间组成全局映射。与现有技术相比,此框架具有几个关键优势。首先,它是自动的。它可以自动构造具有复杂拓扑的曲面的映射,从而确保一对一的连续性。其次,它是通用且强大的。它可以灵活地处理具有不同拓扑的曲面之间的映射计算。第三,它很灵活。尽管具有拓扑和几何结构,它也可以集成用户的语义要求。通过简单直观的人机交互机制,用户可以通过执行点/曲线约束来灵活地控制映射行为。与传统的用户指导的分段曲面贴图技术相比,我们的新方法省时省力,更直观,并且不需要用户专门知识即可计算任意形状之间的复杂曲面图。我们进行各种实验以证明其建模潜力和有效性。

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