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Gaussian in the Wild: 3D Gaussian Splatting for Unconstrained Image Collections

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Novel view synthesis from unconstrained in-the-wild images remains a meaningful but challenging task. The photometric variation and transient occluders in those unconstrained images make it difficult to reconstruct the original scene accurately. Previous approaches tackle the problem by introducing a global appearance feature in Neural Radiance Fields (NeRF). However, in the real world, the unique appearance of each tiny point in a scene is determined by its independent intrinsic material attributes and the varying environmental impacts it receives. Inspired by this fact, we propose Gaussian in the wild (GS-W), a method that uses 3D Gaussian points to reconstruct the scene and introduces separated intrinsic and dynamic appearance feature for each point, capturing the unchanged scene appearance along with dynamic variation like illumination and weather. Additionally, an adaptive sampling strategy is presented to allow each Gaussian point to focus on the local and detailed information more effectively. We also reduce the impact of transient occluders using a 2D visibility map. More experiments have demonstrated better reconstruction quality and details of GS-W compared to NeRF-based methods, with a faster rendering speed. Video results and code are available at https://eastbeanzhang.github.io/GS-W/.

Dongbin Zhang, Chuming Wang, Weitao Wang, Peihao Li, Minghan Qin, Haoqian Wang• 2024

Related benchmarks

TaskDatasetResultRank
Novel View SynthesisRobustNeRF Android
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Novel View SynthesisRobustNeRF Statue
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Novel View SynthesisRobustNeRF Baby Yoda scene
LPIPS0.084
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Novel View SynthesisPhoto Tourism Sacre Coeur
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Novel View SynthesisPhoto Tourism Trevi Fountain
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Novel View SynthesisPhoto Tourism Brandenburg Gate
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Novel View SynthesisRobustNeRF Crab
PSNR33.22
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Novel View SynthesisNeRF On-the-go Medium Occlusion
PSNR21.5
18
Novel View SynthesisNeRF On-the-go Low Occlusion
PSNR19.75
18
Novel View SynthesisNeRF On-the-go High Occlusion
PSNR18.52
18
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