Fast Training of Neural Lumigraph Representations using Meta Learning

06/28/2021
by   Alexander W. Bergman, et al.
5

Novel view synthesis is a long-standing problem in machine learning and computer vision. Significant progress has recently been made in developing neural scene representations and rendering techniques that synthesize photorealistic images from arbitrary views. These representations, however, are extremely slow to train and often also slow to render. Inspired by neural variants of image-based rendering, we develop a new neural rendering approach with the goal of quickly learning a high-quality representation which can also be rendered in real-time. Our approach, MetaNLR++, accomplishes this by using a unique combination of a neural shape representation and 2D CNN-based image feature extraction, aggregation, and re-projection. To push representation convergence times down to minutes, we leverage meta learning to learn neural shape and image feature priors which accelerate training. The optimized shape and image features can then be extracted using traditional graphics techniques and rendered in real time. We show that MetaNLR++ achieves similar or better novel view synthesis results in a fraction of the time that competing methods require.

READ FULL TEXT

page 3

page 6

page 8

page 20

page 21

page 22

research
03/22/2021

Neural Lumigraph Rendering

Novel view synthesis is a challenging and ill-posed inverse rendering pr...
research
06/16/2022

FWD: Real-time Novel View Synthesis with Forward Warping and Depth

Novel view synthesis (NVS) is a challenging task requiring systems to ge...
research
12/07/2020

NeRD: Neural Reflectance Decomposition from Image Collections

Decomposing a scene into its shape, reflectance, and illumination is a c...
research
07/28/2021

Neural Rays for Occlusion-aware Image-based Rendering

We present a new neural representation, called Neural Ray (NeuRay), for ...
research
05/22/2019

A Neural-Symbolic Architecture for Inverse Graphics Improved by Lifelong Meta-Learning

We follow the idea of formulating vision as inverse graphics and propose...
research
11/25/2021

VaxNeRF: Revisiting the Classic for Voxel-Accelerated Neural Radiance Field

Neural Radiance Field (NeRF) is a popular method in data-driven 3D recon...
research
05/05/2023

Learn how to Prune Pixels for Multi-view Neural Image-based Synthesis

Image-based rendering techniques stand at the core of an immersive exper...

Please sign up or login with your details

Forgot password? Click here to reset