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ViewSplat: View-Adaptive Dynamic Gaussian Splatting for Feed-Forward Synthesis

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We present ViewSplat, a view-adaptive 3D Gaussian splatting network for novel view synthesis from unposed images. While recent feed-forward 3D Gaussian splatting has significantly accelerated 3D scene reconstruction by bypassing per-scene optimization, a fundamental fidelity gap remains. We attribute this bottleneck to the limited capacity of single-step feed-forward networks to regress static Gaussian primitives that satisfy all viewpoints. To address this limitation, we shift the paradigm from static primitive regression to view-adaptive dynamic splatting. Instead of a rigid Gaussian representation, our pipeline learns a view-adaptable latent representation. Specifically, ViewSplat initially predicts base Gaussian primitives alongside the weights of dynamic MLPs. During rendering, these MLPs take target view coordinates as input and predict view-dependent residual updates for each Gaussian attribute (i.e., 3D position, scale, rotation, opacity, and color). This mechanism, which we term view-adaptive dynamic splatting, allows each primitive to rectify initial estimation errors, effectively capturing high-fidelity appearances. Extensive experiments demonstrate that ViewSplat achieves state-of-the-art fidelity while maintaining fast inference (17 FPS) and real-time rendering (154 FPS).

Moonyeon Jeong, Seunggi Min, Suhyeon Lee, Hongje Seong• 2026

Related benchmarks

TaskDatasetResultRank
Novel View SynthesisRE10K Small
PSNR24.129
38
Novel View SynthesisRE10K (Medium)
PSNR26.686
33
Novel View SynthesisRE10K (Average)
PSNR26.798
33
Novel View SynthesisRE10K Large
PSNR29.274
25
Novel View SynthesisACID zero-shot
PSNR27.169
20
Novel View SynthesisACID Small
PSNR24.234
13
Novel View SynthesisACID Medium
PSNR27.09
13
Novel View SynthesisACID Large
PSNR29.931
13
Novel View SynthesisACID (Average)
PSNR27.509
13
Novel View SynthesisDTU zero-shot
PSNR (zero-shot)18.174
11
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