Photo-to-Shape Material Transfer for Diverse Structures
Ruizhen Hu, Xiangyu Su, Xiangkai Chen, Oliver Van Kaick, Hui Huang

TL;DR
This paper presents an automatic method that transfers photorealistic, relightable materials from a photo exemplar to 3D shapes, using neural networks to ensure appearance similarity and structural correspondence.
Contribution
The method combines image translation and material assignment neural networks to transfer materials based on perceptual similarity and shape correspondence, enabling high-quality, automatic material application.
Findings
Improves material transfer quality over state-of-the-art methods.
Automatically creates thousands of shapes with realistic materials.
Uses a novel combination of translation and assignment networks for consistency.
Abstract
We introduce a method for assigning photorealistic relightable materials to 3D shapes in an automatic manner. Our method takes as input a photo exemplar of a real object and a 3D object with segmentation, and uses the exemplar to guide the assignment of materials to the parts of the shape, so that the appearance of the resulting shape is as similar as possible to the exemplar. To accomplish this goal, our method combines an image translation neural network with a material assignment neural network. The image translation network translates the color from the exemplar to a projection of the 3D shape and the part segmentation from the projection to the exemplar. Then, the material prediction network assigns materials from a collection of realistic materials to the projected parts, based on the translated images and perceptual similarity of the materials. One key idea of our method is to…
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Taxonomy
Topics3D Surveying and Cultural Heritage · Computer Graphics and Visualization Techniques · 3D Shape Modeling and Analysis
