LumiNet: Latent Intrinsics Meets Diffusion Models for Indoor Scene Relighting

Fuente: arXiv
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Auteurs principaux: Xing, Xiaoyan, Groh, Konrad, Karaoglu, Sezer, Gevers, Theo, Bhattad, Anand
Format: Preprint
Publié: 2024
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author Xing, Xiaoyan
Groh, Konrad
Karaoglu, Sezer
Gevers, Theo
Bhattad, Anand
author_facet Xing, Xiaoyan
Groh, Konrad
Karaoglu, Sezer
Gevers, Theo
Bhattad, Anand
contents We introduce LumiNet, a novel architecture that leverages generative models and latent intrinsic representations for effective lighting transfer. Given a source image and a target lighting image, LumiNet synthesizes a relit version of the source scene that captures the target's lighting. Our approach makes two key contributions: a data curation strategy from the StyleGAN-based relighting model for our training, and a modified diffusion-based ControlNet that processes both latent intrinsic properties from the source image and latent extrinsic properties from the target image. We further improve lighting transfer through a learned adaptor (MLP) that injects the target's latent extrinsic properties via cross-attention and fine-tuning. Unlike traditional ControlNet, which generates images with conditional maps from a single scene, LumiNet processes latent representations from two different images - preserving geometry and albedo from the source while transferring lighting characteristics from the target. Experiments demonstrate that our method successfully transfers complex lighting phenomena including specular highlights and indirect illumination across scenes with varying spatial layouts and materials, outperforming existing approaches on challenging indoor scenes using only images as input.
format Preprint
id arxiv_https___arxiv_org_abs_2412_00177
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle LumiNet: Latent Intrinsics Meets Diffusion Models for Indoor Scene Relighting
Xing, Xiaoyan
Groh, Konrad
Karaoglu, Sezer
Gevers, Theo
Bhattad, Anand
Computer Vision and Pattern Recognition
Graphics
Machine Learning
We introduce LumiNet, a novel architecture that leverages generative models and latent intrinsic representations for effective lighting transfer. Given a source image and a target lighting image, LumiNet synthesizes a relit version of the source scene that captures the target's lighting. Our approach makes two key contributions: a data curation strategy from the StyleGAN-based relighting model for our training, and a modified diffusion-based ControlNet that processes both latent intrinsic properties from the source image and latent extrinsic properties from the target image. We further improve lighting transfer through a learned adaptor (MLP) that injects the target's latent extrinsic properties via cross-attention and fine-tuning. Unlike traditional ControlNet, which generates images with conditional maps from a single scene, LumiNet processes latent representations from two different images - preserving geometry and albedo from the source while transferring lighting characteristics from the target. Experiments demonstrate that our method successfully transfers complex lighting phenomena including specular highlights and indirect illumination across scenes with varying spatial layouts and materials, outperforming existing approaches on challenging indoor scenes using only images as input.
title LumiNet: Latent Intrinsics Meets Diffusion Models for Indoor Scene Relighting
topic Computer Vision and Pattern Recognition
Graphics
Machine Learning
url https://arxiv.org/abs/2412.00177