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Discrete element textures

机译:离散元素纹理

摘要

A variety of phenomena can be characterized by repetitive small scale elements within a large scale domain. Examples include a stack of fresh produce, a plate of spaghetti, or a mosaic pattern. Although certain results can be produced via manual placement or procedural/physical simulation, these methods can be labor intensive, difficult to control, or limited to specific phenomena. We present discrete element textures, a data-driven method for synthesizing repetitive elements according to a small input exemplar and a large output domain. Our method preserves both individual element properties and their aggregate distributions. It is also general and applicable to a variety of phenomena, including different dimensionalities, different element properties and distributions, and different effects including both artistic and physically realistic ones. We represent each element by one or multiple samples whose positions encode relevant element attributes including position, size, shape, and orientation. We propose a sample-based neighborhood similarity metric and an energy optimization solver to synthesize desired outputs that observe not only input exemplars and output domains but also optional constraints such as physics, orientation fields, and boundary conditions. As a further benefit, our method can also be applied for editing existing element distributions. © 2011 ACM.
机译:各种现象可以通过在大规模域内重复使用小规模元素来表征。例子包括一堆新鲜农产品,一盘意大利面或马赛克图案。尽管可以通过手动放置或过程/物理模拟来产生某些结果,但是这些方法可能需要大量劳动,难以控制或仅限于特定现象。我们提出了离散元素纹理,这是一种数据驱动的方法,可以根据较小的输入示例和较大的输出域来合成重复元素。我们的方法既保留单个元素的属性,又保留它们的聚合分布。它也是通用的,适用于各种现象,包括不同的维度,不同的元素属性和分布以及不同的效果,包括艺术效果和物理逼真的效果。我们用一个或多个样本表示每个元素,这些样本的位置编码相关的元素属性,包括位置,大小,形状和方向。我们提出了一个基于样本的邻域相似性度量标准和一个能量优化求解器,以合成所需的输出,这些输出不仅观察输入示例和输出域,还观察可选的约束条件,例如物理场,方向场和边界条件。另一个好处是,我们的方法也可以用于编辑现有元素分布。 ©2011 ACM。

著录项

  • 作者

    Tong X; Wei LY; Ma C;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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