DA Wand: Distortion-Aware Selection using Neural Mesh Parameterization

12/13/2022
by   Richard Liu, et al.
0

We present a neural technique for learning to select a local sub-region around a point which can be used for mesh parameterization. The motivation for our framework is driven by interactive workflows used for decaling, texturing, or painting on surfaces. Our key idea is to incorporate segmentation probabilities as weights of a classical parameterization method, implemented as a novel differentiable parameterization layer within a neural network framework. We train a segmentation network to select 3D regions that are parameterized into 2D and penalized by the resulting distortion, giving rise to segmentations which are distortion-aware. Following training, a user can use our system to interactively select a point on the mesh and obtain a large, meaningful region around the selection which induces a low-distortion parameterization. Our code and project page are currently available.

READ FULL TEXT

page 1

page 2

page 5

page 14

research
01/21/2022

Combined parameterization of material distribution and surface mesh for stiffener layout optimization of complex surfaces

Stiffener layout optimization of complex surfaces is fulfilled within th...
research
08/02/2022

A Dataset and Benchmark for Mesh Parameterization

UV parameterization is a core task in computer graphics, with applicatio...
research
11/18/2021

Pell hyperbolas in DLP-based cryptosystems

We present a study on the use of Pell hyperbolas in cryptosystems with s...
research
09/28/2019

Voting for Distortion Points in Geometric Processing

Low isometric distortion is often required for mesh parameterizations. A...
research
01/17/2022

Distortion-Aware Brushing for Interactive Cluster Analysis in Multidimensional Projections

Brushing is an everyday interaction in 2D scatterplots, which allows use...
research
06/08/2020

Skinning a Parameterization of Three-Dimensional Space for Neural Network Cloth

We present a novel learning framework for cloth deformation by embedding...
research
11/15/2021

Volumetric Parameterization of the Placenta to a Flattened Template

We present a volumetric mesh-based algorithm for parameterizing the plac...

Please sign up or login with your details

Forgot password? Click here to reset