Neural Shape Deformation Priors

10/11/2022
by   Jiapeng Tang, et al.
0

We present Neural Shape Deformation Priors, a novel method for shape manipulation that predicts mesh deformations of non-rigid objects from user-provided handle movements. State-of-the-art methods cast this problem as an optimization task, where the input source mesh is iteratively deformed to minimize an objective function according to hand-crafted regularizers such as ARAP. In this work, we learn the deformation behavior based on the underlying geometric properties of a shape, while leveraging a large-scale dataset containing a diverse set of non-rigid deformations. Specifically, given a source mesh and desired target locations of handles that describe the partial surface deformation, we predict a continuous deformation field that is defined in 3D space to describe the space deformation. To this end, we introduce transformer-based deformation networks that represent a shape deformation as a composition of local surface deformations. It learns a set of local latent codes anchored in 3D space, from which we can learn a set of continuous deformation functions for local surfaces. Our method can be applied to challenging deformations and generalizes well to unseen deformations. We validate our approach in experiments using the DeformingThing4D dataset, and compare to both classic optimization-based and recent neural network-based methods.

READ FULL TEXT

page 7

page 10

page 21

research
12/13/2019

Neural Cages for Detail-Preserving 3D Deformations

We propose a novel learnable representation for detail-preserving shape ...
research
11/26/2022

Reduced Representation of Deformation Fields for Effective Non-rigid Shape Matching

In this work we present a novel approach for computing correspondences b...
research
09/13/2023

Digital 3D Smocking Design

We develop an optimization-based method to model smocking, a surface emb...
research
01/05/2022

DeepMLS: Geometry-Aware Control Point Deformation

We introduce DeepMLS, a space-based deformation technique, guided by a s...
research
01/19/2016

Tetrisation of triangular meshes and its application in shape blending

The As-Rigid-As-Possible (ARAP) shape deformation framework is a versati...
research
07/19/2023

3Deformer: A Common Framework for Image-Guided Mesh Deformation

We propose 3Deformer, a general-purpose framework for interactive 3D sha...
research
08/14/2014

Regularized Harmonic Surface Deformation

Harmonic surface deformation is a well-known geometric modeling method t...

Please sign up or login with your details

Forgot password? Click here to reset