Deep Learning Based Approach Implemented to Image Super-Resolution

被引:4
作者
Thuong Le-Tien [1 ]
Tuan Nguyen-Thanh
Hanh-Phan Xuan
Giang Nguyen-Truong
Vinh Ta-Quoc
机构
[1] Ho Chi Minh City Univ Technol HCMUT, 268 Ly Thuong Kiet St,Dist 10, Ho Chi Minh City, Vietnam
关键词
image super-resolution; deep learning; inverse problems; Residual in Residual Dense Network (RRDN); Generative Adversarial Network (GAN); Enhanced Super-Resolution Generative Adversarial Networks (ESRGAN);
D O I
10.12720/jait.11.4.209-216
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
The aim of this research is about application of deep learning approach to the inverse problem, which is one of the most popular issues that has been concerned for many years about, the image Super-Resolution (SR). From then on, many fields of machine learning and deep learning have gained a lot of momentum in solving such imaging problems. In this article, we review the deep-learning techniques for solving the image super-resolution especially about the Generative Adversarial Network (GAN) technique and discuss other ways to use the GAN for an efficient solution on the task. More specifically, we review about the Enhanced Super-Resolution Generative Adversarial Network (ESRGAN) and Residual in Residual Dense Network (RRDN) that are introduced by 'idealo' team and evaluate their results for image SR, they had generated precise results that gained the high rank on the leader board of state-of-the-art techniques with many other datasets like Set5, Set14 or DIV2K, etc. To be more specific, we will also review the Single-Image Super-Resolution using Generative Adversarial Network (SRGAN) and the Enhanced Super-Resolution Generative Adversarial Networks (ESRGAN), two famous state-of-the-art techniques, by re-train the proposed model with different parameter and comparing with their result. So that can be helping us understand the working of announced model and the different when we choose others parameter compared to theirs.
引用
收藏
页码:209 / 216
页数:8
相关论文
共 16 条
[1]  
360view, HA NOI 9 GIGAPIXEL
[2]  
Bengio Y., 2014, COMMUN ACM
[3]  
Islam MJ, 2020, Arxiv, DOI arXiv:1909.09437
[4]   Signaling network between the dysregulated expression of microRNAs and mRNAs in propofol-induced developmental neurotoxicity in mice [J].
Jiang, Congshan ;
Logan, Sarah ;
Yan, Yasheng ;
Inagaki, Yasuyoshi ;
Arzua, Thiago ;
Ma, Peizhong ;
Lu, Shemin ;
Bosnjak, Zeljko J. ;
Bai, Xiaowen .
SCIENTIFIC REPORTS, 2018, 8
[5]  
Jolicoeur-Martineau A, 2018, Arxiv, DOI [arXiv:1807.00734, DOI 10.48550/ARXIV.1807.00734]
[6]   Deep Learning for Multiple-Image Super-Resolution [J].
Kawulok, Michal ;
Benecki, Pawel ;
Piechaczek, Szymon ;
Hrynczenko, Krzysztof ;
Kostrzewa, Daniel ;
Nalepa, Jakub .
IEEE GEOSCIENCE AND REMOTE SENSING LETTERS, 2020, 17 (06) :1062-1066
[7]  
Le Tien T., 2009, J RES DEV APPL INFOR, P39
[8]   Photo-Realistic Single Image Super-Resolution Using a Generative Adversarial Network [J].
Ledig, Christian ;
Theis, Lucas ;
Huszar, Ferenc ;
Caballero, Jose ;
Cunningham, Andrew ;
Acosta, Alejandro ;
Aitken, Andrew ;
Tejani, Alykhan ;
Totz, Johannes ;
Wang, Zehan ;
Shi, Wenzhe .
30TH IEEE CONFERENCE ON COMPUTER VISION AND PATTERN RECOGNITION (CVPR 2017), 2017, :105-114
[9]  
Lucas A., 2018, IEEE Signal Processing Magazine
[10]  
Tien T. L., 2007, MINOR PROJECT SUPERR