单循环平纹织物

Qing Xing, E. Akleman, Jianer Chen, J. Gross
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引用次数: 10

摘要

最近的研究表明,如果我们在一个可定向的表面上扭曲一个网格的任意边缘子集,所得到的扩展图旋转系统(EGRS)可以用来诱导表面上的循环编织。在扩展图形旋转系统中,边缘被看作是可以扭曲的纸条。纸条的两侧提供“两股”来构建编织结构。这些线要么与网边“平行”,形成“未扭曲的边缘”,要么在“扭曲的边缘”上相互交叉。如果在可定向表面上的任意网格边缘子集以相同的螺旋意义扭曲,则EGRS在表面上诱导循环平面编织,该循环由交替越过或穿过其他循环(或它们自己)的循环组成。在本文中,我们证明了通过选择适当的边缘子集进行扭曲,总是可以从任意表面上的网格开始创建单循环平纹编织。我们还演示了如何从网格开始构建大量单循环平纹织物对象。有趣的是,具有最小边缘扭曲数量的单循环解决方案对应于平织物体,在视觉上类似于凯尔特结。为了将平面编织循环转换为三维线程结构,我们扩展了原始的投影方法,该方法以前仅在所有网格边缘都扭曲时才有效。通过这里描述的扩展,我们的投影方法也可以用于处理未扭曲的边缘。我们开发了一种系统,通过交互控制扭曲边缘的比例,将任何流形网格转换为单循环平面编织对象。该系统还允许我们通过一组参数实时交互地改变线程的形状。我们在这里展示,通过使用这个系统,我们可以创造出各种各样的单循环平纹织物
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Single-cycle plain-woven objects
It has recently been shown that if we twist an arbitrary subset of edges of a mesh on an orientable surface, the resulting extended graph rotation system (EGRS) can be used to induce a cyclic weaving on the surface. In extended graph rotation systems, an edge is viewed as a paper strip that can be twisted. The sides of the paper strips provide ``two strands'' to construct weaving structures. Either these strands are ``parallel'' to the mesh edge for an ``untwisted edge'', or they both cross over the edge and over each other for a ``twisted edge''. If an arbitrary subset of edges of a mesh on an orientable surface is twisted in the same helical sense, then the EGRS induces a cyclic plain-weaving on the surface, which consists of cycles that cross other cycles (or themselves) by alternatingly going over and under. In this paper, we show that it is always possible to create a single-cycle plain-weaving starting from a mesh on an arbitrary surface, by selecting an appropriate subset of edges to be twisted. We also demonstrate how, starting from a mesh, to construct a large number of single-cycle plain-woven objects. Interestingly, the single-cycle solutions with a minimal number of edge twists correspond to plain-woven objects that are visually similar to Celtic knots. For converting plain-weaving cycles to 3D thread structures, we extend the original projection method, which previously worked only when all mesh edges are twisted. With the extension described here, our projection method can also be used to handle untwisted edges. We have developed a system that converts any manifold mesh into single-cycle plain-woven objects, by interactively controlling the proportion of edges that are twisted. The system also allows us to change the shapes of the threads with a set of parameters, interactively in real-time. We demonstrate here that by using this system, we can create a wide variety of single-cycle plain-woven objects
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