Symmetry-guided texture synthesis and manipulation

Vladimir G. Kim, Y. Lipman, T. Funkhouser
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引用次数: 25

Abstract

This article presents a framework for symmetry-guided texture synthesis and processing. It is motivated by the long-standing problem of how to optimize, transfer, and control the spatial patterns in textures. The key idea is that symmetry representations that measure autocorrelations with respect to all transformations of a group are a natural way to describe spatial patterns in many real-world textures. To leverage this idea, we provide methods to transfer symmetry representations from one texture to another, process the symmetries of a texture, and optimize textures with respect to properties of their symmetry representations. These methods are automatic and robust, as they don't require explicit detection of discrete symmetries. Applications are investigated for optimizing, processing, and transferring symmetries and textures.
对称引导的纹理合成和操作
本文提出了一个对称导向纹理合成与处理的框架。如何优化、转移和控制纹理的空间格局是一个长期存在的问题。关键的思想是,对称表示衡量一个群体的所有变换的自相关性,是描述许多现实世界纹理中空间模式的自然方式。为了利用这一思想,我们提供了将对称表示从一个纹理转移到另一个纹理的方法,处理纹理的对称性,并根据其对称表示的属性优化纹理。这些方法是自动和鲁棒的,因为它们不需要明确检测离散对称性。应用程序的优化,处理和传输对称和纹理进行了调查。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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