NeRF-Tex: Neural Reflectance Field Textures

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Date
2021
Journal Title
Journal ISSN
Volume Title
Publisher
The Eurographics Association
Abstract
We investigate the use of neural fields for modeling diverse mesoscale structures, such as fur, fabric, and grass. Instead of using classical graphics primitives to model the structure, we propose to employ a versatile volumetric primitive represented by a neural reflectance field (NeRF-Tex), which jointly models the geometry of the material and its response to lighting. The NeRF-Tex primitive can be instantiated over a base mesh to ''texture'' it with the desired meso and microscale appearance. We condition the reflectance field on user-defined parameters that control the appearance. A single NeRF texture thus captures an entire space of reflectance fields rather than one specific structure. This increases the gamut of appearances that can be modeled and provides a solution for combating repetitive texturing artifacts. We also demonstrate that NeRF textures naturally facilitate continuous level-of-detail rendering. Our approach unites the versatility and modeling power of neural networks with the artistic control needed for precise modeling of virtual scenes. While all our training data is currently synthetic, our work provides a recipe that can be further extended to extract complex, hard-to-model appearances from real images.
Description

        
@inproceedings{
10.2312:sr.20211285
, booktitle = {
Eurographics Symposium on Rendering - DL-only Track
}, editor = {
Bousseau, Adrien and McGuire, Morgan
}, title = {{
NeRF-Tex: Neural Reflectance Field Textures
}}, author = {
Baatz, Hendrik
 and
Granskog, Jonathan
 and
Papas, Marios
 and
Rousselle, Fabrice
 and
Novák, Jan
}, year = {
2021
}, publisher = {
The Eurographics Association
}, ISSN = {
1727-3463
}, ISBN = {
978-3-03868-157-1
}, DOI = {
10.2312/sr.20211285
} }
Citation