GaussianSR: High Fidelity 2D Gaussian Splatting for Arbitrary-Scale Image Super-Resolution
Jintong Hu, Bin Xia, Bin Chen, Wenming Yang, Lei Zhang
Abstract
Implicit neural representations (INRs) have revolutionized arbitrary-scale super-resolution (ASSR) by modeling images as continuous functions. Most existing INR-based ASSR networks first extract features from the given low-resolution image using an encoder, and then render the super-resolved result via a multi-layer perceptron decoder. Although these approaches have shown promising results, their performance is constrained by the limited representation ability of discrete latent codes in the encoded features. In this paper, we propose a novel ASSR method named GaussianSR that overcomes this limitation through 2D Gaussian Splatting (2DGS). Unlike traditional methods that treat pixels as discrete points, GaussianSR represents each pixel as a continuous Gaussian field. The encoded features are simultaneously refined and upsampled by rendering the mutually stacked Gaussian fields. As a result, long-range dependencies are established to enhance representation ability. In addition, a classifier is developed to dynamically assign Gaussian kernels to all pixels to further improve flexibility. All components of GaussianSR (i.e. encoder, classifier, Gaussian kernels, and decoder) are jointly learned end-to-end. Experiments demonstrate that GaussianSR achieves superior ASSR performance with fewer parameters than existing methods while enjoying interpretable and content-aware feature aggregations.
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Install the CLIlune papers fulltext b53e07cf-173d-4232-8338-2eedf25bbb4aCited by top-tier papers15
- Pixel to Gaussian: Ultra-Fast Continuous Super-Resolution with 2D Gaussian ModelingLong Peng, Anran Wu, Wenbo Li, Peizhe Xia et al.ICLR 2026 · 57 citations
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- SGI: Structured 2D Gaussians for Efficient and Compact Large Image RepresentationZixuan Pan, Kaiyuan Tang, Jun Xia, Yifan Qin et al.CVPR 2026 · 3 citations
- Instant Gaussianimage: A Generalizable and Self-Adaptive Image Representation via 2D Gaussian SplattingZhaojie Zeng, Yuesong Wang, Tao Guan, Chao Yang et al.ICCV 2025 · 3 citations
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- GS-SLAM: Dense Visual SLAM with 3D Gaussian SplattingChi Yan, Delin Qu, Dan Xu, Bin Zhao et al.CVPR 2024 · 270 citations
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