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Paper · arXiv 2408.03356

RayGauss: Volumetric Gaussian-Based Ray Casting for Photorealistic Novel View Synthesis

Hugo Blanc, Jean-Emmanuel Deschaud, Alexis Paljic

10 upvotesAugust 6, 2024arXiv 预印本
AI 摘要

The work introduces a physically consistent volumetric rendering method using differentiable ray casting of irregularly distributed Gaussians, achieving high-quality rendering with fast inference.

Neural Radiance Fields (NeRF)locally parameterized structuresdifferentiable splattingGaussian kernelsdifferentiable ray castingGaussian functionsSpherical Gaussians/HarmonicsBVH structurerendering qualityBlender dataset

Abstract

Differentiable volumetric rendering-based methods made significant progress in novel view synthesis. On one hand, innovative methods have replaced the Neural Radiance Fields (NeRF) network with locally parameterized structures, enabling high-quality renderings in a reasonable time. On the other hand, approaches have used differentiable splatting instead of NeRF's ray casting to optimize radiance fields rapidly using Gaussian kernels, allowing for fine adaptation to the scene. However, differentiable ray casting of irregularly spaced kernels has been scarcely explored, while splatting, despite enabling fast rendering times, is susceptible to clearly visible artifacts. Our work closes this gap by providing a physically consistent formulation of the emitted radiance c and density {\sigma}, decomposed with Gaussian functions associated with Spherical Gaussians/Harmonics for all-frequency colorimetric representation. We also introduce a method enabling differentiable ray casting of irregularly distributed Gaussians using an algorithm that integrates radiance fields slab by slab and leverages a BVH structure. This allows our approach to finely adapt to the scene while avoiding splatting artifacts. As a result, we achieve superior rendering quality compared to the state-of-the-art while maintaining reasonable training times and achieving inference speeds of 25 FPS on the Blender dataset. Project page with videos and code: https://raygauss.github.io/

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