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5 months ago

Towards An End-to-End Framework for Flow-Guided Video Inpainting

Zhen Li; Cheng-Ze Lu; Jianhua Qin; Chun-Le Guo; Ming-Ming Cheng

Towards An End-to-End Framework for Flow-Guided Video Inpainting

Abstract

Optical flow, which captures motion information across frames, is exploited in recent video inpainting methods through propagating pixels along its trajectories. However, the hand-crafted flow-based processes in these methods are applied separately to form the whole inpainting pipeline. Thus, these methods are less efficient and rely heavily on the intermediate results from earlier stages. In this paper, we propose an End-to-End framework for Flow-Guided Video Inpainting (E$^2$FGVI) through elaborately designed three trainable modules, namely, flow completion, feature propagation, and content hallucination modules. The three modules correspond with the three stages of previous flow-based methods but can be jointly optimized, leading to a more efficient and effective inpainting process. Experimental results demonstrate that the proposed method outperforms state-of-the-art methods both qualitatively and quantitatively and shows promising efficiency. The code is available at https://github.com/MCG-NKU/E2FGVI.

Code Repositories

MCG-NKU/E2FGVI
Official
pytorch
Mentioned in GitHub
Dragoniss/minspore-phase2-E2FGVI
mindspore
Mentioned in GitHub

Benchmarks

BenchmarkMethodologyMetrics
seeing-beyond-the-visible-on-kitti360-exE2FGVI
Average PSNR: 19.45
video-inpainting-on-davisE2FGVI
Ewarp: 0.1315
PSNR: 33.01
SSIM: 0.9721
VFID: 0.116
video-inpainting-on-hqvi-240pE2FGVI
LPIPS: 0.0401
PSNR: 30.63
SSIM: 0.9427
VFID: 0.1885
video-inpainting-on-youtube-vosE2FGVI
Ewarp: 0.0864
PSNR: 33.71
SSIM: 0.9700
VFID: 0.046

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