Ray-Distance Volume Rendering for Neural Scene Reconstruction

Open Access
Authors
Publication date 2025
Host editors
  • A. Leonardis
  • E. Ricci
  • S. Roth
  • O. Russakovsky
  • T. Sattler
  • G. Varol
Book title Computer Vision – ECCV 2024
Book subtitle 18th European Conference, Milan, Italy, September 29–October 4, 2024 : proceedings
ISBN
  • 9783031726293
ISBN (electronic)
  • 9783031726309
Series Lecture Notes in Computer Science
Volume | Issue number XIV
Pages (from-to) 377–394
Publisher Cham: Springer
Organisations
  • Faculty of Science (FNWI) - Informatics Institute (IVI)
Abstract
Existing methods in neural scene reconstruction utilize the Signed Distance Function (SDF) to model the density function. However, in indoor scenes, the density computed from the SDF for a sampled point may not consistently reflect its real importance in volume rendering, often due to the influence of neighboring objects. To tackle this issue, our work proposes a novel approach for indoor scene reconstruction, which instead parameterizes the density function with the Signed Ray Distance Function (SRDF). Firstly, the SRDF is predicted by the network and transformed to a ray-conditioned density function for volume rendering. We argue that the ray-specific SRDF only considers the surface along the camera ray, from which the derived density function is more consistent to the real occupancy than that from the SDF. Secondly, although SRDF and SDF represent different aspects of scene geometries, their values should share the same sign indicating the underlying spatial occupancy. Therefore, this work introduces a SRDF-SDF consistency loss to constrain the signs of the SRDF and SDF outputs. Thirdly, this work proposes a self-supervised visibility task, introducing the physical visibility geometry to the reconstruction task. The visibility task combines prior from predicted SRDF and SDF as pseudo labels, and contributes to generating more accurate 3D geometry. Our method implemented with different representations has been validated on indoor datasets, achieving improved performance in both reconstruction and view synthesis.
Document type Conference contribution
Language English
Published at https://doi.org/10.1007/978-3-031-72630-9_22
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