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4 months ago

AdaCoF: Adaptive Collaboration of Flows for Video Frame Interpolation

Hyeongmin Lee; Taeoh Kim; Tae-young Chung; Daehyun Pak; Yuseok Ban; Sangyoun Lee

AdaCoF: Adaptive Collaboration of Flows for Video Frame Interpolation

Abstract

Video frame interpolation is one of the most challenging tasks in video processing research. Recently, many studies based on deep learning have been suggested. Most of these methods focus on finding locations with useful information to estimate each output pixel using their own frame warping operations. However, many of them have Degrees of Freedom (DoF) limitations and fail to deal with the complex motions found in real world videos. To solve this problem, we propose a new warping module named Adaptive Collaboration of Flows (AdaCoF). Our method estimates both kernel weights and offset vectors for each target pixel to synthesize the output frame. AdaCoF is one of the most generalized warping modules compared to other approaches, and covers most of them as special cases of it. Therefore, it can deal with a significantly wide domain of complex motions. To further improve our framework and synthesize more realistic outputs, we introduce dual-frame adversarial loss which is applicable only to video frame interpolation tasks. The experimental results show that our method outperforms the state-of-the-art methods for both fixed training set environments and the Middlebury benchmark.

Code Repositories

HyeongminLEE/AdaCoF-pytorch
Official
pytorch
Mentioned in GitHub

Benchmarks

BenchmarkMethodologyMetrics
video-frame-interpolation-on-msu-video-frameAdaCoF_f
LPIPS: 0.058
MS-SSIM: 0.913
PSNR: 24.99
SSIM: 0.903
VMAF: 60.19
video-frame-interpolation-on-msu-video-frameAdaCoF
LPIPS: 0.692
MS-SSIM: 0.883
PSNR: 23.17
SSIM: 0.891
VMAF: 58.29
video-frame-interpolation-on-x4k1000fpsAdaCoF
PSNR: 23.90
SSIM: 0.727
tOF: 6.89
video-frame-interpolation-on-x4k1000fpsAdaCoF_f
PSNR: 25.81
SSIM: 0.772
tOF: 6.42

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AdaCoF: Adaptive Collaboration of Flows for Video Frame Interpolation | Papers | HyperAI