Reflections Unlock: Geometry-Aware Reflection Disentanglement in 3D Gaussian Splatting for Photorealistic Scenes Rendering
Jiayi Song, Zihan Ye, Qingyuan Zhou, Weidong Yang, Ben Fei, Jingyi Xu, Ying He, Wanli Ouyang

TL;DR
Ref-Unlock introduces a geometry-aware reflection disentanglement framework for 3D Gaussian Splatting, significantly improving the rendering of complex reflective scenes by explicitly modeling transmitted and reflected components.
Contribution
The paper presents a novel dual-branch, geometry-aware reflection modeling approach that explicitly disentangles reflections in 3D Gaussian Splatting, enhancing geometric consistency and rendering quality.
Findings
Outperforms classical reflection methods in 3D Gaussian Splatting
Achieves competitive results with NeRF-based models
Enables flexible reflection editing in scenes
Abstract
Accurately rendering scenes with reflective surfaces remains a significant challenge in novel view synthesis, as existing methods like Neural Radiance Fields (NeRF) and 3D Gaussian Splatting (3DGS) often misinterpret reflections as physical geometry, resulting in degraded reconstructions. Previous methods rely on incomplete and non-generalizable geometric constraints, leading to misalignment between the positions of Gaussian splats and the actual scene geometry. When dealing with real-world scenes containing complex geometry, the accumulation of Gaussians further exacerbates surface artifacts and results in blurred reconstructions. To address these limitations, in this work, we propose Ref-Unlock, a novel geometry-aware reflection modeling framework based on 3D Gaussian Splatting, which explicitly disentangles transmitted and reflected components to better capture complex reflections…
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Taxonomy
TopicsComputer Graphics and Visualization Techniques · 3D Shape Modeling and Analysis · Interactive and Immersive Displays
