open access publication

Conference Paper, 2024

Volumetric Disentanglement for 3D Scene Manipulation

2024 IEEE/CVF Winter Conference on Applications of Computer Vision (WACV), ISBN 979-8-3503-1892-0, Volume 00, Pages 8652-8662, 10.1109/wacv57701.2024.00847

Contributors

Benaim, Sagie (Corresponding author) [1] Warburg, Frederik Rahbæk [2] Christensen, Peter Ebert [1] Belongie, Serge J 0000-0002-0388-5217 [1]

Affiliations

  1. [1] University of Copenhagen
  2. [NORA names: KU University of Copenhagen; University; Denmark; Europe, EU; Nordic; OECD];
  3. [2] Technical University of Denmark
  4. [NORA names: DTU Technical University of Denmark; University; Denmark; Europe, EU; Nordic; OECD]

Abstract

Recently, advances in differential volumetric rendering enabled significant breakthroughs in the photo-realistic and fine-detailed reconstruction of complex 3D scenes, which is key for many virtual reality applications. However, in the context of augmented reality, one may also wish to effect semantic manipulations or augmentations of objects within a scene. To this end, we propose a volumetric framework for (i) disentangling or separating, the volumetric representation of a given foreground object from the background, and (ii) semantically manipulating the foreground object, as well as the background. Our framework takes as input a set of 2D masks specifying the desired foreground object for training views, together with the associated 2D views and poses, and produces a foreground-background disentanglement that respects the surrounding illumination, reflections, and partial occlusions, which can be applied to both training and novel views. Our method enables the separate control of pixel color and depth as well as 3D similarity transformations of both the foreground and background objects. We subsequently demonstrate our framework’s applicability on several downstream manipulation tasks, going beyond the placement and movement of foreground objects. These tasks include object camouflage, non-negative 3D object in-painting, 3D object translation, 3D object inpainting, and 3D text-based object manipulation. The project webpage is provided in https://sagiebenaim.github.io/volumetric-disentanglement/.

Keywords

applications, augmentation, augmented reality, background, breakthrough, camouflage, complex 3D scenes, context, context of augmented reality, control, depth, disentanglement, foreground, foreground objects, framework, framework application, illumination, in-painting, inpainting, manipulation, manipulation tasks, mask, method, movement, novel views, object manipulation, object translation, objective, occlusion, partial occlusion, photo-realistic, placement, pose, project, project webpage, reality, reality applications, reflection, representation, scene, scene manipulation, semantic manipulation, similarity transformation, surrounding illumination, task, training, training views, transformation, translation, views, virtual reality applications, volumetric, volumetric framework, volumetric representation, webpage

Data Provider: Digital Science