MMM
YYYY
DRVI: Dual Refinement for Video Interpolation
DRVI:视频插值的双重细化
DRVI:ビデオ内挿のためのデュアル精密化
DRVI: 비디오 삽입 값 의 이중 세분 화
DRVI: doble adelgazamiento de la interpolación de vídeo
DRVI: Double raffinement de l'interpolation vidéo
DRVI: двойное уточнение интерполяции видео
Xuanyi Wu ¹, Zhenkun Zhou 周振坤 ², Anup Basu ¹
¹ Department of Computing Science, University of Alberta, Edmonton, AB T6G 2R3, Canada
² Huawei Fields Laboratory, Hangzhou, Zhejiang 310000, China
IEEE Access, 13 August 2021
Abstract

The quality of a video clip is considered to be poor if the resolution or the frame rate is low. Video interpolation is thus introduced to enhance video quality and provide a better viewing experience to users. However, there are still some challenges, like the blur caused by motion changes.

In this paper, we introduce a dual refinement technique for video interpolation (DRVI). It has three main steps, namely flow refinement, frame synthesis, and Haar refinement. The flow refinement can generate accurate bi-directional flows, which are more suitable for frame interpolation tasks. The Haar refinement uses the Discrete Wavelet Transform (DWT). It can preserve information in different frequency domains and also speed up the learning process. We also add an arbitrary time approximation module to allow multi-frame generation.

The number of learnable parameters in our model is much less than existing methods; still, it has excellent performance. Our method is trained on Vimeo90K (Xue et al. , 2019) and tested on three well-known datasets to demonstrate its effectiveness.
IEEE Access_1
IEEE Access_2
IEEE Access_3
Reviews and Discussions
https://www.hotpaper.io/index.html
Light-perception-based interactive control of an underwater digital twin hand
Digital twin optical computing system
Unlocking home-based nocturnal health management: A fiber-optic approach for early detection of cardiorespiratory rhythm disorders
A flexible wireless system for prospective photodynamic therapy applications
Parallel bright-field and multi-order edge imaging via wide field-of-view trichannel metalens
Cavity-assisted nonlocal metasurfaces for momentum-space broadband-operational optical vortice generation with maximum efficiency approaching 80%
Instantaneous UAV tracking using single-photon LiDAR via photon-event-driven suppression of temporal-averaging bias
Biological testing with terahertz focal-plane imaging based on a slot metamaterial sensor
Scattering media as random micro-phase-pinhole arrays for incoherent information transmission
Entropy-loaded digital subcarrier multiplexing transmission adaptive to the loss-spectrum ripples of hollow-core fiber
Integrated optical transceivers: architectures, key technologies, and applications
Interface and integration challenges in 0D/2D hybrid photodetection: optimizing assembly, interface and charge transfer



Previous Article                                Next Article
About
|
Contact
|
Copyright © Hot Paper