Remote Sensing Image Superresolution Using Deep Residual Channel Attention

被引:79
作者
Haut, Juan Mario [1 ]
Fernandez-Beltran, Ruben [2 ]
Paoletti, Mercedes E. [1 ]
Plaza, Javier [1 ]
Plaza, Antonio [1 ]
机构
[1] Univ Extremadura, Escuela Politecn, Dept Technol Comp & Commun, Hyperspectral Comp Lab, Caceres 10003, Spain
[2] Univ Jaume 1, Inst New Imaging Technol, Castellon De La Plana 12071, Spain
来源
IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING | 2019年 / 57卷 / 11期
关键词
Remote sensing; Spatial resolution; Feature extraction; Visualization; Earth; Training; Deep learning; remote sensing; single-image superresolution (SR); visual attention (VA); RESOLUTION; RECONSTRUCTION;
D O I
10.1109/TGRS.2019.2924818
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
The current trend in remote sensing image superresolution (SR) is to use supervised deep learning models to effectively enhance the spatial resolution of airborne and satellite-based optical imagery. Nonetheless, the inherent complexity of these architectures/data often makes these methods very difficult to train. Despite these recent advances, the huge amount of network parameters that must be fine-tuned and the lack of suitable high-resolution remotely sensed imagery in actual operational scenarios still raise some important challenges that may become relevant limitations in the existent earth observation data production environments. To address these problems, we propose a new remote sensing SR approach that integrates a visual attention mechanism within a residual-based network design in order to allow the SR process to focus on those features extracted from land-cover components that require more computations to be superresolved. As a result, the network training process is significantly improved because it aims at learning the most relevant high-frequency information while the proposed architecture allows neglecting the low-frequency features extracted from spatially uninformative earth surface areas by means of several levels of skip connections. Our experimental assessment, conducted using the University of California at Merced and GaoFen-2 remote sensing image collections, three scaling factors, and eight different SR methods, demonstrates that our newly proposed approach exhibits competitive performance in the task of superresolving remotely sensed imagery.
引用
收藏
页码:9277 / 9289
页数:13
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