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CompGS: Efficient 3D Scene Representation via Compressed Gaussian Splatting

About

Gaussian splatting, renowned for its exceptional rendering quality and efficiency, has emerged as a prominent technique in 3D scene representation. However, the substantial data volume of Gaussian splatting impedes its practical utility in real-world applications. Herein, we propose an efficient 3D scene representation, named Compressed Gaussian Splatting (CompGS), which harnesses compact Gaussian primitives for faithful 3D scene modeling with a remarkably reduced data size. To ensure the compactness of Gaussian primitives, we devise a hybrid primitive structure that captures predictive relationships between each other. Then, we exploit a small set of anchor primitives for prediction, allowing the majority of primitives to be encapsulated into highly compact residual forms. Moreover, we develop a rate-constrained optimization scheme to eliminate redundancies within such hybrid primitives, steering our CompGS towards an optimal trade-off between bitrate consumption and representation efficacy. Experimental results show that the proposed CompGS significantly outperforms existing methods, achieving superior compactness in 3D scene representation without compromising model accuracy and rendering quality. Our code will be released on GitHub for further research.

Xiangrui Liu, Xinju Wu, Pingping Zhang, Shiqi Wang, Zhu Li, Sam Kwong• 2024

Related benchmarks

TaskDatasetResultRank
Novel View SynthesisMip-NeRF 360
PSNR27.26
143
3D ReconstructionMip-NeRF 360
PSNR27.26
66
Novel View SynthesisMip-NeRF360
PSNR27.28
45
Novel View SynthesisBungeeNeRF
PSNR26.38
36
3D Scene ReconstructionDeepBlending
PSNR29.69
30
Novel View SynthesisDeep Blending
PSNR29.89
29
Novel View SynthesisTanks&Temples
PSNR23.62
29
3D Scene ReconstructionTank & Temples
PSNR23.7
26
3D Scene Compression3D Scene Compression Performance
Encoding Time (s)10.8
21
Novel View SynthesisTanks&Temples
PSNR23.7
17
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