DNF-Net: a Deep Normal Filtering Network for Mesh Denoising

06/28/2020
by   Xianzhi Li, et al.
0

This paper presents a deep normal filtering network, called DNF-Net, for mesh denoising. To better capture local geometry, our network processes the mesh in terms of local patches extracted from the mesh. Overall, DNF-Net is an end-to-end network that takes patches of facet normals as inputs and directly outputs the corresponding denoised facet normals of the patches. In this way, we can reconstruct the geometry from the denoised normals with feature preservation. Besides the overall network architecture, our contributions include a novel multi-scale feature embedding unit, a residual learning strategy to remove noise, and a deeply-supervised joint loss function. Compared with the recent data-driven works on mesh denoising, DNF-Net does not require manual input to extract features and better utilizes the training data to enhance its denoising performance. Finally, we present comprehensive experiments to evaluate our method and demonstrate its superiority over the state of the art on both synthetic and real-scanned meshes.

READ FULL TEXT

page 1

page 2

page 7

page 9

page 10

page 11

page 13

research
03/10/2019

NormalNet: Learning based Guided Normal Filtering for Mesh Denoising

Mesh denoising is a critical technology in geometry processing, which ai...
research
03/14/2020

Non-Local Part-Aware Point Cloud Denoising

This paper presents a novel non-local part-aware deep neural network to ...
research
09/02/2022

Geometric and Learning-based Mesh Denoising: A Comprehensive Survey

Mesh denoising is a fundamental problem in digital geometry processing. ...
research
07/02/2021

Deep Mesh Prior: Unsupervised Mesh Restoration using Graph Convolutional Networks

This paper addresses mesh restoration problems, i.e., denoising and comp...
research
05/04/2020

Neural Subdivision

This paper introduces Neural Subdivision, a novel framework for data-dri...
research
07/20/2016

Mesh Denoising based on Normal Voting Tensor and Binary Optimization

This paper presents a tensor multiplication based smoothing algorithm th...
research
11/14/2017

Robust and High Fidelity Mesh Denoising

This paper presents a simple and effective two-stage mesh denoising algo...

Please sign up or login with your details

Forgot password? Click here to reset