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Activating More Information in Arbitrary-Scale Image Super-Resolution

delete2024-01-01
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OA
AI
Y
Yaoqian Zhao
滕奇志 cover
滕奇志 (Qizhi Teng)
陈洪刚 (Honggang Chen) *
Z
Zhang Shu-jiang
X
Xiaohai He
Y
Yi Li
R
Ray E. Sheriff
DOI:10.1109/TMM.2024.3373257delete
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Abstract

Abstract

En 中文
Single-image super-resolution (SISR) has experienced vigorous growth with the rapid development of deep learning. However, handling arbitrary scales (e.g., integers, non-integers, or asymmetric) using a single model remains a challenging task. Existing super-resolution (SR) networks commonly employ static convolutions during feature extraction, which cannot effectively perceive changes in scales. Moreover, these continuous-scale upsampling modules only utilize the scale factors, without considering the diversity of local features. To activate more information for better reconstruction, two plug-in and compatible modules for fixed-scale networks are designed to perform arbitrary-scale SR tasks. Firstly, we design a Scale-aware Local Feature Adaptation Module (SLFAM), which adaptively adjusts the attention weights of dynamic filters based on the local features and scales. It enables the network to possess stronger representation capabilities. Then we propose a Local Feature Adaptation Upsampling Module (LFAUM), which combines scales and local features to perform arbitrary-scale reconstruction. It allows the upsampling to adapt to local structures. Besides, deformable convolution is utilized letting more information to be activated in the reconstruction, enabling the network to better adapt to the texture features. Extensive experiments on various benchmark datasets demonstrate that integrating the proposed modules into a fixed-scale SR network enables it to achieve satisfactory results with non-integer or asymmetric scales while maintaining advanced performance with integer scales.
Keywords:
Super-resolution
arbitrary-scale
scale-aware
local feature adaptation
dynamic convolution
deformable convolution

Journal

IEEE Transactions on Multimedia cover
IEEE Transactions on Multimedia
IF:
9.7
Papers:
4.5K
Citations:
2.4W

Organization

E
Edge Hill University
Scholars:
1.2K
Papers: 1.3K
Citations: 958
S
sichuan university
Scholars:
11.9W
Papers: 7.7W
Citations: 100