Unifying Appearance Codes and Bilateral Grids for Driving Scene Gaussian Splatting
Nan Wang, Lixing Xiao, Yuantao Chen, Weiqing Xiao, Pierre Merriaux, Lei Lei, Ziyang Yan, Saining Zhang, Shaocong Xu, Chongjie Ye, Bohan Li, Zhaoxi Chen
Abstract
Neural rendering techniques, including NeRF and Gaussian Splatting (GS), rely on photometric consistency to produce high-quality reconstructions. However, in real-world driving scenarios, it is challenging to guarantee perfect photometric consistency in acquired images. Appearance codes have been widely used to address this issue, but their modeling capability is limited, as a single code is applied to the entire image. Recently, the bilateral grid was introduced to perform pixel-wise color mapping, but it is difficult to optimize and constrain effectively. In this paper, we propose a novel multi-scale bilateral grid that unifies appearance codes and bilateral grids. We demonstrate that this approach significantly improves geometric accuracy in dynamic, decoupled autonomous driving scene reconstruction, outperforming both appearance codes and bilateral grids. This is crucial for autonomous driving, where accurate geometry is important for obstacle avoidance and control. Our method shows strong results across four datasets: Waymo, NuScenes, Argoverse, and PandaSet. We further demonstrate that the improvement in geometry is driven by the multi-scale bilateral grid, which effectively reduces floaters caused by photometric inconsistency. Our code is open-sourced at https://bigcileng.github.io/bilateral-driving.
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Your agent calls
Luneget_paper_fulltext
Free to start. No credit card required.
Terminal
Install the CLIlune papers fulltext f2aa5387-beb2-4e6f-ab98-5fd11302a73dCited by top-tier papers12
- SD-MVS: Segmentation-Driven Deformation Multi-View Stereo with Spherical Refinement and EM OptimizationZhenlong Yuan, Jiakai Cao, Zhaoxin Li, Hao Jiang et al.AAAI 2024 · 38 citations
- DGGT: Feedforward 4D Reconstruction of Dynamic Driving Scenes using Unposed ImagesXiaoxue Chen, Ziyi Xiong, Yuantao Chen, Gen Li et al.CVPR 2026 · 24 citations
- DVP-MVS: Synergize Depth-Edge and Visibility Prior for Multi-View StereoZhenlong Yuan, Jinguo Luo, Fei Shen, Zhaoxin Li et al.AAAI 2025 · 19 citations
- EventVAD: Training-Free Event-Aware Video Anomaly DetectionYihua Shao, Haojin He, Sijie Li, Siyu Chen et al.ACM MM 2025 · 19 citations
- ORV: 4D Occupancy-centric Robot Video GenerationXiuyu Yang, Bohan Li, Shaocong Xu, Nan Wang et al.CVPR 2026 · 19 citations
Builds on29
- 3D Gaussian Splatting for Real-Time Radiance Field RenderingBernhard Kerbl, Georgios Kopanas, Thomas Leimkühler, George DrettakisSIGGRAPH 2023 · 5,687 citations
- NeuS: Learning Neural Implicit Surfaces by Volume Rendering for Multi-view ReconstructionPeng Wang, Lingjie Liu, Yuan Liu, Christian Theobalt et al.NeurIPS 2021 · 2,500 citations
- Block-NeRF: Scalable Large Scene Neural View SynthesisMatthew Tancik, Vincent Casser, Xinchen Yan, Sabeek Pradhan et al.CVPR 2022 · 702 citations
- MonoSDF: Exploring Monocular Geometric Cues for Neural Implicit Surface ReconstructionZehao Yu, Songyou Peng, Michael Niemeyer, Torsten Sattler et al.NeurIPS 2022 · 670 citations
- MagicDrive: Street View Generation with Diverse 3D Geometry ControlRuiyuan Gao, Kai Chen, Enze Xie, Lanqing Hong et al.ICLR 2024 · 248 citations
Related papers
- Novel View Synthesis Under Large-Deviation Viewpoint for Autonomous DrivingXin Ma, Jiguang Zhang, Peng Lu, Shibiao Xu et al.AAAI 2025 · 5 citations
- PBR-NeRF: Inverse Rendering with Physics-Based Neural FieldsSean Wu, Shamik Basu, Tim Broedermann, Luc Van Gool et al.CVPR 2025
- SplatAD: Real-Time Lidar and Camera Rendering with 3D Gaussian Splatting for Autonomous DrivingGeorg Hess, Carl Lindström, Maryam Fatemi, Christoffer Petersson et al.CVPR 2025
- 3D Geometry-aware Deformable Gaussian Splatting for Dynamic View SynthesisZhicheng Lu, Xiang Guo, Le Hui, Tianrui Chen et al.CVPR 2024 · 33 citations
- S-NeRF: Neural Radiance Fields for Street ViewsZiyang Xie, Junge Zhang, Wenye Li, Feihu Zhang et al.ICLR 2023 · 13 citations
