TensorX
返回文献探索

Paper · arXiv 2403.17898

Octree-GS: Towards Consistent Real-time Rendering with LOD-Structured 3D Gaussians

Kerui Ren, Lihan Jiang, Tao Lu, Mulin Yu, Linning Xu, Zhangkai Ni, Bo Dai

17 upvotesMarch 26, 2024arXiv 预印本
AI 摘要

Octree-GS, a novel LOD-structured 3D Gaussian approach, enhances real-time rendering efficiency and consistency in large, complex scenes.

3D Gaussian splattingNeRFGaussian primitivesviewing frustumlevel-of-detailLODmulti-resolution anchor points

Abstract

The recent 3D Gaussian splatting (3D-GS) has shown remarkable rendering fidelity and efficiency compared to NeRF-based neural scene representations. While demonstrating the potential for real-time rendering, 3D-GS encounters rendering bottlenecks in large scenes with complex details due to an excessive number of Gaussian primitives located within the viewing frustum. This limitation is particularly noticeable in zoom-out views and can lead to inconsistent rendering speeds in scenes with varying details. Moreover, it often struggles to capture the corresponding level of details at different scales with its heuristic density control operation. Inspired by the Level-of-Detail (LOD) techniques, we introduce Octree-GS, featuring an LOD-structured 3D Gaussian approach supporting level-of-detail decomposition for scene representation that contributes to the final rendering results. Our model dynamically selects the appropriate level from the set of multi-resolution anchor points, ensuring consistent rendering performance with adaptive LOD adjustments while maintaining high-fidelity rendering results.

北京市昌平区探索星信息技术及软件开发工作室

京ICP备2026059466号
Octree-GS: Towards Consistent Real-time Rendering with LOD-Structured 3D Gaussians | TensorX