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Computational Parquetry: Fabricated Style Transfer with Wood Pixels

机译:计算木地板:带有木质像素的预制样式转移

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摘要

Parquetry is the art and craft of decorating a surface with a pattern of differently colored veneers of wood, stone, or other materials. Traditionally, the process of designing and making parquetry has been driven by color, using the texture found in real wood only for stylization or as a decorative effect. Here, we introduce a computational pipeline that draws from the rich natural structure of strongly textured real-world veneers as a source of detail to approximate a target image as faithfully as possible using a manageable number of parts. This challenge is closely related to the established problems of patch-based image synthesis and stylization in some ways, but fundamentally different in others. Most importantly, the limited availability of resources (any piece of wood can only be used once) turns the relatively simple problem of finding the right piece for the target location into the combinatorial problem of finding optimal parts while avoiding resource collisions. We introduce an algorithm that efficiently solves an approximation to the problem. It further addresses challenges like gamut mapping, feature characterization, and the search for fabricable cuts. We demonstrate the effectiveness of the system by fabricating a selection of pieces of parquetry from different kinds of unstained wood veneer.
机译:木地板是用木材,石材或其他材料的不同颜色饰面板装饰表面的艺术和工艺。传统上,实木复合地板的设计和制造过程是由颜色驱动的,仅将实木中的纹理用于造型或用作装饰效果。在这里,我们引入了一个计算管道,该管道从强烈纹理化的现实世界单板的丰富自然结构中提取细节,以尽可能多地使用可管理的零件来忠实地逼近目标图像。在某些方面,此挑战与基于补丁的图像合成和样式化已建立的问题密切相关,而在其他方面则根本不同。最重要的是,有限的资源可用性(任何一块木头只能使用一次)将相对简单的问题(即为目标位置找到合适的一块)转变为在避免资源冲突的同时找到最佳零件的组合问题。我们介绍一种可以有效解决该问题近似值的算法。它进一步解决了色域映射,特征表征以及可加工切割的搜索等难题。我们通过从不同种类的未染色木贴面中挑选出一系列拼花地板来证明该系统的有效性。

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