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NTIRE 2022 Challenge on Efficient Super-Resolution: Methods and Results
Li, Yawei1; Zhang, Kai1; Timofte, Radu1; Van Gool, Luc1; Kong, Fangyuan1,2; Li, Mingxi1; Liu, Songwei1; Du, Zongcai3; Liu, Ding3; Zhou, Chenhui4; Chen, Jingyi4; Han, Qingrui4; Li, Zheyuan5; Liu, Yingqi5; Chen, Xiangyu5; Cai, Haoming5; Qiao, Yu5; Dong, Chao5; Sun, Long6; Pan, Jinshan6; Zhu, Yi6; Zong, Zhikai7; Liu, Xiaoxiao7; Hui, Zheng8; Yang, Tao8; Ren, Peiran8; Xie, Xuansong8; Hua, Xian Sheng8; Wang, Yanbo9; Ji, Xiaozhong9; Lin, Chuming9; Luo, Donghao10; Tai, Ying11; Wang, Chengjie11; Zhang, Zhizhong12; Xie, Yuan12; Cheng, Shen12; Luo, Ziwei13; Yu, Lei13; Wen, Zhihong14; Wul, Qi15; Li, Youwei15; Fan, Haoqiang16; Sun, Jian17; Liu, Shuaicheng17; Huang, Yuanfei17; Jin, Meiguang18; Huang, Hua18; Liu, Jing18; Zhang, Xinjian19; Wang, Yan19; Long, Lingshun20; Kong, Lingshun20; Li, Gen21; Zhang, Yuanfan10; Cao, Zuowei10; Sun, Lei22; Alexander, Panaetov23; Wang, Yucong24; Zhang, Shuhao25; Zhang, Yuhao26; Cai, Minjie27; Wang, Li28; Tian, Lu29; Wang, Zheyuan30; Ma, Hongbing31; Liu, Jie32; Chen, Chao32; Cai, Yidong33; Tang, Jie33; Wu, Gangshan34; Wang, Weiran35; Huang, Shirui36; Lu, Honglei37; Liu, Huan38; Wang, Keyan39; Chen, Jun40; Chen, Shi41; Miao, Yuchun42; Huang, Zimo42; Zhang, Lefei42; Ayazoglu, Mustafa43; Xiong, Wei44; Xiong, Chengyi44; Wang, Fei44; Li, Hao45; Wen, Ruimian45; Yang, Zhijing45; Zou, Wenbin46; Zheng, Weixin46; Ye, Tian46; Zhang, Yuncheng46; Kong, Xiangzhen46; Arora, Aditya47; Zamir, Syed Waqas47; Khan, Salman47; Hayat, Munawar47; Khan, Fahad Shahbaz47; Gao, Dandan48; Zhou, Dengwen48; Ning, Qian49; Tang, Jingzhu49; Huang, Han49; Wang, Yufei49; Peng, Zhangheng49; Li, Haobo50; Guan, Wenxue50; Gong, Shenghua50; Li, Xin50; Liu, Jun50; Wang, Wanjun51; Zhou, Dengwen51; Zeng, Kun52; Lin, Hanjiang52; Chen, Xinyu52; Fang, Jinsheng52; Sinha, Abhishek Kumar53; Moorthi, S. Manthira53; Dhar, Debajyoti53; Yang, Hao Hsiang54; Huang, Zhi Kai54; Chen, Wei Ting55; Chang, Hua En55; Kuo, Sy Yen55; Tan, Wei55; Chen, Hao56; Narang, Pratik57; Yinghua, Liu58; Tianlin, Zhang59; Xiaoming, Zhang59; Meng, Dingxuan60; Tian, Chunwei60; Morshed, Mashrur M.61; Ahsan, Ahmad Omar61
2022
Conference Name2022 IEEE/CVF Conference on Computer Vision and Pattern Recognition Workshops (CVPRW)
Source PublicationIEEE Computer Society Conference on Computer Vision and Pattern Recognition Workshops
Volume2022-June
Pages1061-1101
Conference DateJUN 18-24, 2022
Conference PlaceNew Orleans, LA
Abstract

This paper reviews the NTIRE 2022 challenge on efficient single image super-resolution with focus on the proposed solutions and results. The task of the challenge was to super-resolve an input image with a magnification factor of ×4 based on pairs of low and corresponding high resolution images. The aim was to design a network for single image super-resolution that achieved improvement of efficiency measured according to several metrics including runtime, parameters, FLOPs, activations, and memory consumption while at least maintaining the PSNR of 29.00dB on DIV2K validation set. IMDN is set as the baseline for efficiency measurement. The challenge had 3 tracks including the main track (runtime), sub-track one (model complexity), and sub-track two (overall performance). In the main track, the practical runtime performance of the submissions was evaluated. The rank of the teams were determined directly by the absolute value of the average runtime on the validation set and test set. In sub-track one, the number of parameters and FLOPs were considered. And the individual rankings of the two metrics were summed up to determine a final ranking in this track. In sub-track two, all of the five metrics mentioned in the description of the challenge including runtime, parameter count, FLOPs, activations, and memory consumption were considered. Similar to sub-track one, the rankings of five metrics were summed up to determine a final ranking. The challenge had 303 registered participants, and 43 teams made valid submissions. They gauge the state-of-the-art in efficient single image super-resolution.

KeywordMeasurement Runtime Convolution Conferences Superresolution Memory Management Graphics Processing Units
DOI10.1109/CVPRW56347.2022.00118
URLView the original
Indexed ByCPCI-S
Language英語English
WOS Research AreaComputer Science
WOS SubjectComputer Science, Artificial Intelligence ; Computer Science, Theory & Methods
WOS IDWOS:000861612701013
Scopus ID2-s2.0-85129009024
Fulltext Access
Citation statistics
Document TypeConference paper
CollectionUniversity of Macau
Corresponding AuthorLi, Yawei
Affiliation1.Eth, Computer Vision Lab, Zurich, Switzerland
2.University of Wurzburg, Germany
3.ByteDance, Shenzhen, China
4.State Key Laboratory for Novel Software Technology, Nanjing University, China
5.ByteDance Inc.,
6.NetEase, Inc.,
7.Shenzhen Institutes of Advanced Technology, Cas, China
8.University of Macau, Macao
9.Shanghai Ai Lab, Shanghai, China
10.Nanjing University of Science and Technology, China
11.Amazon Web Services,
12.Qingdao Hi-image Technologies Co.,Ltd (Hisense Visual Technology Co.,Ltd.), China
13.Alibaba Damo Academy, Efc, Zhejiang, Yuhang District, Hangzhou, China
14.East China Normal University, China
15.Youtu Lab, Tencent,
16.Megvii Technology, China
17.University of Electronic Science and Technology of China, China
18.School of Artificial Intelligence, Beijing Normal University, China
19.Alibaba Group,
20.Bilibili Ai,
21.Nankai-Baidu Joint Lab, Nankai University, Tianjin, China
22.Platform Technologies, Tencent Online Video,
23.Higher School of Economics (@Edu.hse.ru), Huawei Moscow Research Center (@Huawei.com), Russian Federation
24.Hunan University, China
25.Xidian University, China
26.Xilinx Technology Beijing Limited, China
27.College of Information Science and Engineering, Xinjiang University, Urumqi, China
28.Department of Electronic Engineering, Tsinghua University, Beijing, China
29.Nanjing University, China
30.Xidian University, McMaster University, Canada
31.School of Telecommunication Engineering, Xidian University, Xi'an, China
32.McMaster University, Canada
33.School of Computer Science, Wuhan University, Wuhan, China
34.School of Mathematical Science, University of Electronic Science and Technology of China, Chengdu, China
35.School of Computer Science, The University of Sydney, Sydney, Australia
36.Aselsan Research, Ankara, Turkey
37.School of Electronic and Information Engineering, South-Central University for Nationalities, Wuhan, China
38.Guangdong University of Technology, China
39.Fujian Normal University, Fuzhou University, Jimei University, China Design Group, China
40.Inception Institute of Artificial Intelligence (IIAI), Abu Dhabi, United Arab Emirates
41.Monash University, Melbourne, Australia
42.Mohamed Bin Zayed University of Ai, United Arab Emirates
43.North China Electric Power University, Beijing, Changping District, China
44.The School of Artificial Intelligence of Xidian University, China
45.College of Computer Science and Technology, Jilin University, China
46.School of Electronic and Information Engineering, Beihang University, China
47.School of Control and Computer Engineering, North China Electric Power University, Beijing, China
48.Minnan Normal University, Fujian, Zhangzhou, China
49.Minjiang University, Fujian, Fuzhou, China
50.Space Applications Centre, Ahmedabad, India
51.Department of Electrical Engineering, National Taiwan University, Taiwan
52.Graduate Institute of Electronics Engineering, National Taiwan University, Taiwan
53.Damo Academy, Alibaba Group,
54.Zte, Nanjing, China
55.Bits Pilani, Pilani, Rajasthan, India
56.Kwikpic Tech. Services, Kolkata, India
57.Computer Vision Institute, Shenzhen University, Shenzhen, China
58.Cas Key Laboratory of Electronic and Information Technology for Complex Aerospace Systems, National Space Science Center, Chinese Academy of Science (CAS), China
59.Institue of Artificial Intelligence, Southwest Jiaotong University, China
60.Northwestern Polytechnical University, China
61.Islamic University of Technology, Dhaka, Bangladesh
Recommended Citation
GB/T 7714
Li, Yawei,Zhang, Kai,Timofte, Radu,et al. NTIRE 2022 Challenge on Efficient Super-Resolution: Methods and Results[C], 2022, 1061-1101.
APA Li, Yawei., Zhang, Kai., Timofte, Radu., Van Gool, Luc., Kong, Fangyuan., Li, Mingxi., Liu, Songwei., Du, Zongcai., Liu, Ding., Zhou, Chenhui., Chen, Jingyi., Han, Qingrui., Li, Zheyuan., Liu, Yingqi., Chen, Xiangyu., Cai, Haoming., Qiao, Yu., Dong, Chao., Sun, Long., ...& Ahsan, Ahmad Omar (2022). NTIRE 2022 Challenge on Efficient Super-Resolution: Methods and Results. IEEE Computer Society Conference on Computer Vision and Pattern Recognition Workshops, 2022-June, 1061-1101.
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