用神经隐式函数生成可3D打印的高精度影子艺术模型
Neural Shadow Art
- 采用隐式占用函数表示,支持任意拓扑和任意分辨率建模
- 可在非垂直光照下精准匹配输入二值图像,投影误差更低
- 兼顾工业生产需求与艺术表现,减少材料使用并避免结构冗余
阴影艺术是一种令人着迷的雕塑表达形式,特定方向的投影能精确呈现目标形状。本文提出神经阴影艺术(Neural Shadow Art),利用隐式占用函数表示,显著拓展了阴影艺术的可能性。该表示方法可生成高质量、可3D打印的任意拓扑几何模型,且支持任意分辨率,优于以往基于体素和网格的方法。本方法提供更灵活的框架,可在多种光方向和屏幕朝向条件下,使投影精准匹配输入的二值图像,无需光源垂直于屏幕。此外,允许投影几何相对于输入图像进行刚性变换,并同时优化光方向与屏幕朝向,确保复杂拓扑输入下投影仍接近目标图像。模型还促进表面平滑性并降低材料用量,有利于高效工业生产,同时生成避免平凡交叉圆柱结构的惊艳艺术效果。综上,我们提出一种更灵活的阴影艺术表示方法,在提升投影精度的同时,满足工业需求并带来震撼的艺术体验。
原文摘要 · Abstract (English)
Shadow art is a captivating form of sculptural expression where the projection of a sculpture in a specific direction reveals a desired shape with high precision. In this work, we introduce Neural Shadow Art, which leverages implicit occupancy function representation to significantly expand the possibilities of shadow art. This representation enables the design of high-quality, 3D-printable geometric models with arbitrary topologies at any resolution, surpassing previous voxel- and mesh-based methods. Our method provides a more flexible framework, enabling projections to match input binary images under various light directions and screen orientations, without requiring light sources to be perpendicular to the screens. Furthermore, we allow rigid transformations of the projected geometries relative to the input binary images and simultaneously optimize light directions and screen orientations to ensure that the projections closely resemble the target images, especially when dealing with inputs of complex topologies. In addition, our model promotes surface smoothness and reduces material usage. This is particularly advantageous for efficient industrial production and enhanced artistic effect by generating compelling shadow art that avoids trivial, intersecting cylindrical structures. In summary, we propose a more flexible representation for shadow art, significantly improving projection accuracy while simultaneously meeting industrial requirements and delivering awe-inspiring artistic effects.
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