Node Graph Optimization Using Differentiable Proxies

07/15/2022
by   Yiwei Hu, et al.
0

Graph-based procedural materials are ubiquitous in content production industries. Procedural models allow the creation of photorealistic materials with parametric control for flexible editing of appearance. However, designing a specific material is a time-consuming process in terms of building a model and fine-tuning parameters. Previous work [Hu et al. 2022; Shi et al. 2020] introduced material graph optimization frameworks for matching target material samples. However, these previous methods were limited to optimizing differentiable functions in the graphs. In this paper, we propose a fully differentiable framework which enables end-to-end gradient based optimization of material graphs, even if some functions of the graph are non-differentiable. We leverage the Differentiable Proxy, a differentiable approximator of a non-differentiable black-box function. We use our framework to match structure and appearance of an output material to a target material, through a multi-stage differentiable optimization. Differentiable Proxies offer a more general optimization solution to material appearance matching than previous work.

READ FULL TEXT

page 1

page 2

page 4

page 5

page 7

page 8

research
06/30/2022

Controlling Material Appearance by Examples

Despite the ubiquitousness of materials maps in modern rendering pipelin...
research
04/25/2023

Generating Procedural Materials from Text or Image Prompts

Node graph systems are used ubiquitously for material design in computer...
research
05/23/2023

Differentiable Stripe Patterns for Inverse Design of Structured Surfaces

Stripe patterns are ubiquitous in nature and everyday life. While the sy...
research
07/03/2022

MatFormer: A Generative Model for Procedural Materials

Procedural material graphs are a compact, parameteric, and resolution-in...
research
02/03/2023

Automatic inference of a anatomically meaningful solid wood texture from a single photograph

Wood is a volumetric material with a very large appearance gamut that is...
research
07/17/2023

Search Me Knot, Render Me Knot: Embedding Search and Differentiable Rendering of Knots in 3D

We introduce the problem of knot-based inverse perceptual art. Given mul...
research
09/15/2023

Neural Metamaterial Networks for Nonlinear Material Design

Nonlinear metamaterials with tailored mechanical properties have applica...

Please sign up or login with your details

Forgot password? Click here to reset