DGD: Dynamic 3D Gaussians Distillation

Fuente: arXiv
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Autori principali: Labe, Isaac, Issachar, Noam, Lang, Itai, Benaim, Sagie
Natura: Preprint
Pubblicazione: 2024
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author Labe, Isaac
Issachar, Noam
Lang, Itai
Benaim, Sagie
author_facet Labe, Isaac
Issachar, Noam
Lang, Itai
Benaim, Sagie
contents We tackle the task of learning dynamic 3D semantic radiance fields given a single monocular video as input. Our learned semantic radiance field captures per-point semantics as well as color and geometric properties for a dynamic 3D scene, enabling the generation of novel views and their corresponding semantics. This enables the segmentation and tracking of a diverse set of 3D semantic entities, specified using a simple and intuitive interface that includes a user click or a text prompt. To this end, we present DGD, a unified 3D representation for both the appearance and semantics of a dynamic 3D scene, building upon the recently proposed dynamic 3D Gaussians representation. Our representation is optimized over time with both color and semantic information. Key to our method is the joint optimization of the appearance and semantic attributes, which jointly affect the geometric properties of the scene. We evaluate our approach in its ability to enable dense semantic 3D object tracking and demonstrate high-quality results that are fast to render, for a diverse set of scenes. Our project webpage is available on https://isaaclabe.github.io/DGD-Website/
format Preprint
id arxiv_https___arxiv_org_abs_2405_19321
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle DGD: Dynamic 3D Gaussians Distillation
Labe, Isaac
Issachar, Noam
Lang, Itai
Benaim, Sagie
Computer Vision and Pattern Recognition
We tackle the task of learning dynamic 3D semantic radiance fields given a single monocular video as input. Our learned semantic radiance field captures per-point semantics as well as color and geometric properties for a dynamic 3D scene, enabling the generation of novel views and their corresponding semantics. This enables the segmentation and tracking of a diverse set of 3D semantic entities, specified using a simple and intuitive interface that includes a user click or a text prompt. To this end, we present DGD, a unified 3D representation for both the appearance and semantics of a dynamic 3D scene, building upon the recently proposed dynamic 3D Gaussians representation. Our representation is optimized over time with both color and semantic information. Key to our method is the joint optimization of the appearance and semantic attributes, which jointly affect the geometric properties of the scene. We evaluate our approach in its ability to enable dense semantic 3D object tracking and demonstrate high-quality results that are fast to render, for a diverse set of scenes. Our project webpage is available on https://isaaclabe.github.io/DGD-Website/
title DGD: Dynamic 3D Gaussians Distillation
topic Computer Vision and Pattern Recognition
url https://arxiv.org/abs/2405.19321