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NeRFLiX: High-Quality Neural View Synthesis by Learning a Degradation-Driven Inter-viewpoint MiXer
Kun Zhou Wenbo Li Yi Wang Tao Hu Nianjuan Jiang Xiaoguang Han Jiangbo Lu

Abstract
Neural radiance fields (NeRF) show great success in novel view synthesis. However, in real-world scenes, recovering high-quality details from the source images is still challenging for the existing NeRF-based approaches, due to the potential imperfect calibration information and scene representation inaccuracy. Even with high-quality training frames, the synthetic novel views produced by NeRF models still suffer from notable rendering artifacts, such as noise, blur, etc. Towards to improve the synthesis quality of NeRF-based approaches, we propose NeRFLiX, a general NeRF-agnostic restorer paradigm by learning a degradation-driven inter-viewpoint mixer. Specially, we design a NeRF-style degradation modeling approach and construct large-scale training data, enabling the possibility of effectively removing NeRF-native rendering artifacts for existing deep neural networks. Moreover, beyond the degradation removal, we propose an inter-viewpoint aggregation framework that is able to fuse highly related high-quality training images, pushing the performance of cutting-edge NeRF models to entirely new levels and producing highly photo-realistic synthetic views.
Code Repositories
Benchmarks
| Benchmark | Methodology | Metrics |
|---|---|---|
| novel-view-synthesis-on-llff | Plenoxels + NeRFLiX | LPIPS: 0.156 PSNR: 26.9 SSIM: 0.864 |
| novel-view-synthesis-on-llff | TensoRF + NeRFLiX | LPIPS: 0.149 PSNR: 27.39 SSIM: 0.867 |
| novel-view-synthesis-on-tanks-and-temples | TensoRF + NeRFLiX | PSNR: 28.94 SSIM: 0.93 |
| novel-view-synthesis-on-tanks-and-temples | Plenoxels + NeRFLiX | PSNR: 28.61 |
| novel-view-synthesis-on-tanks-and-temples | DIVeR + NeRFLiX | SSIM: 0.924 |
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