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A Low-Order Steady-State Model of Electric Springs for Conservation Voltage Reduction in Active Distribution Networks with Renewables Journal article
Wang, Jian, Lao, Keng Weng, Dai, Ningyi, Liu, Haoming, Chi, Yuan, Wang, Qianggang, Song, Yonghua. A Low-Order Steady-State Model of Electric Springs for Conservation Voltage Reduction in Active Distribution Networks with Renewables[J]. IEEE Transactions on Power Delivery, 2024, 39(1), 363-377.
Authors:  Wang, Jian;  Lao, Keng Weng;  Dai, Ningyi;  Liu, Haoming;  Chi, Yuan; et al.
Favorite | TC[WOS]:4 TC[Scopus]:6  IF:3.8/4.2 | Submit date:2023/01/30
Electric Spring  Conservation Voltage Reduction  Active Distribution Networks  Low-order Steady-state Model  
Social conformity is associated with inter-trial electroencephalogram variability Journal article
Zhang, Haoming, Zhang, Kunkun, Zhang, Ziqi, Zhao, Mingqi, Liu, Quanying, Luo, Wenbo, Wu, Haiyan. Social conformity is associated with inter-trial electroencephalogram variability[J]. Annals of the New York Academy of Sciences, 2023, 1523(1), 104-118.
Authors:  Zhang, Haoming;  Zhang, Kunkun;  Zhang, Ziqi;  Zhao, Mingqi;  Liu, Quanying; et al.
Favorite | TC[WOS]:5 TC[Scopus]:5  IF:4.1/6.3 | Submit date:2024/01/10
Decision Change  Inter-trial Eeg Variability  Neural Representation  Social Conformity  
Social conformity is associated with inter-trial electroencephalogram variability Journal article
Zhang, Haoming, Zhang, Kunkun, Zhang, Ziqi, Zhao, Mingqi, Liu, Quanying, Luo, Wenbo, Wu, Haiyan. Social conformity is associated with inter-trial electroencephalogram variability[J]. Annals of the New York Academy of Sciences, 2023, 1523(1), 104-118.
Authors:  Zhang, Haoming;  Zhang, Kunkun;  Zhang, Ziqi;  Zhao, Mingqi;  Liu, Quanying; et al.
Favorite | TC[WOS]:5 TC[Scopus]:5  IF:4.1/6.3 | Submit date:2023/06/05
Decision Change  Inter-trial Eeg Variability  Neural Representation  Social Conformity  
Efficient Image Super-Resolution Using Vast-Receptive-Field Attention Conference paper
Zhou,Lin, Cai,Haoming, Gu,Jinjin, Li,Zheyuan, Liu,Yingqi, Chen,Xiangyu, Qiao,Yu, Dong,Chao. Efficient Image Super-Resolution Using Vast-Receptive-Field Attention[C]. Tomer Michaeli, Leonid Karlinsky, Ko Nishino:Springer Science and Business Media Deutschland GmbH, 2023, 256-272.
Authors:  Zhou,Lin;  Cai,Haoming;  Gu,Jinjin;  Li,Zheyuan;  Liu,Yingqi; et al.
Favorite | TC[Scopus]:41 | Submit date:2023/08/03
Attention Mechanism  Deep Convolution Network  Image Super-resolution  
Starch from Pueraria lobata and the amylose fraction alleviates dextran sodium sulfate induced colitis in mice Journal article
Yang, Yifei, Li, Mingxing, Liu, Qingsong, Zhao, Qianyun, Zeng, Jiuping, Wang, Qin, Zhao, Yueshui, Du, Fukuan, Chen, Yu, Shen, Jing, Luo, Haoming, Wang, Shengpeng, Li, Wanping, Chen, Meijuan, Li, Xiaobing, Wang, Fang, Sun, Yuhong, Gu, Li, Xiao, Zhangang, Du, Yu, Wu, Xu. Starch from Pueraria lobata and the amylose fraction alleviates dextran sodium sulfate induced colitis in mice[J]. Carbohydrate Polymers, 2023, 302, 120329.
Authors:  Yang, Yifei;  Li, Mingxing;  Liu, Qingsong;  Zhao, Qianyun;  Zeng, Jiuping; et al.
Favorite | TC[WOS]:14 TC[Scopus]:16  IF:10.7/10.2 | Submit date:2023/02/22
Pueraria Lobata  Starch  Colitis  Short Chain Fatty Acids  Gut Microbiota  Amylose  
Blueprint Separable Residual Network for Efficient Image Super-Resolution Conference paper
Zheyuan Li, Yingqi Liu, Xiangyu Chen, Haoming Cai, Jinjin Gu, Yu Qiao, Chao Dong. Blueprint Separable Residual Network for Efficient Image Super-Resolution[C], 2022, 832-842.
Authors:  Zheyuan Li;  Yingqi Liu;  Xiangyu Chen;  Haoming Cai;  Jinjin Gu; et al.
Favorite | TC[WOS]:91 TC[Scopus]:133 | Submit date:2023/01/30
Performance Evaluation  Convolution  Computational Modeling  Superresolution  Redundancy  Complexity Theory  Pattern Recognition  
NTIRE 2022 Challenge on Efficient Super-Resolution: Methods and Results Conference paper
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, Pan, Jinshan, Zhu, Yi, Zong, Zhikai, Liu, Xiaoxiao, Hui, Zheng, Yang, Tao, Ren, Peiran, Xie, Xuansong, Hua, Xian Sheng, Wang, Yanbo, Ji, Xiaozhong, Lin, Chuming, Luo, Donghao, Tai, Ying, Wang, Chengjie, Zhang, Zhizhong, Xie, Yuan, Cheng, Shen, Luo, Ziwei, Yu, Lei, Wen, Zhihong, Wul, Qi, Li, Youwei, Fan, Haoqiang, Sun, Jian, Liu, Shuaicheng, Huang, Yuanfei, Jin, Meiguang, Huang, Hua, Liu, Jing, Zhang, Xinjian, Wang, Yan, Long, Lingshun, Kong, Lingshun, Li, Gen, Zhang, Yuanfan, Cao, Zuowei, Sun, Lei, Alexander, Panaetov, Wang, Yucong, Zhang, Shuhao, Zhang, Yuhao, Cai, Minjie, Wang, Li, Tian, Lu, Wang, Zheyuan, Ma, Hongbing, Liu, Jie, Chen, Chao, Cai, Yidong, Tang, Jie, Wu, Gangshan, Wang, Weiran, Huang, Shirui, Lu, Honglei, Liu, Huan, Wang, Keyan, Chen, Jun, Chen, Shi, Miao, Yuchun, Huang, Zimo, Zhang, Lefei, Ayazoglu, Mustafa, Xiong, Wei, Xiong, Chengyi, Wang, Fei, Li, Hao, Wen, Ruimian, Yang, Zhijing, Zou, Wenbin, Zheng, Weixin, Ye, Tian, Zhang, Yuncheng, Kong, Xiangzhen, Arora, Aditya, Zamir, Syed Waqas, Khan, Salman, Hayat, Munawar, Khan, Fahad Shahbaz, Gao, Dandan, Zhou, Dengwen, Ning, Qian, Tang, Jingzhu, Huang, Han, Wang, Yufei, Peng, Zhangheng, Li, Haobo, Guan, Wenxue, Gong, Shenghua, Li, Xin, Liu, Jun, Wang, Wanjun, Zhou, Dengwen, Zeng, Kun, Lin, Hanjiang, Chen, Xinyu, Fang, Jinsheng, Sinha, Abhishek Kumar, Moorthi, S. Manthira, Dhar, Debajyoti, Yang, Hao Hsiang, Huang, Zhi Kai, Chen, Wei Ting, Chang, Hua En, Kuo, Sy Yen, Tan, Wei, Chen, Hao, Narang, Pratik, Yinghua, Liu, Tianlin, Zhang, Xiaoming, Zhang, Meng, Dingxuan, Tian, Chunwei, Morshed, Mashrur M., Ahsan, Ahmad Omar. NTIRE 2022 Challenge on Efficient Super-Resolution: Methods and Results[C], 2022, 1061-1101.
Authors:  Li, Yawei;  Zhang, Kai;  Timofte, Radu;  Van Gool, Luc;  Kong, Fangyuan; et al.
Favorite | TC[WOS]:21 TC[Scopus]:72 | Submit date:2023/01/30
Measurement  Runtime  Convolution  Conferences  Superresolution  Memory Management  Graphics Processing Units  
A novel convolutional neural network model to remove muscle artifacts from eeg Conference paper
Zhang, Haoming, Wei, Chen, Zhao, Mingqi, Liu, Quanying, Wu, Haiyan. A novel convolutional neural network model to remove muscle artifacts from eeg[C], NEW YORK, NY 10017 USA:IEEE, 2021, 1265-1269.
Authors:  Zhang, Haoming;  Wei, Chen;  Zhao, Mingqi;  Liu, Quanying;  Wu, Haiyan
Favorite | TC[WOS]:28 TC[Scopus]:49 | Submit date:2021/11/30
Convolutional Neural Network  Eeg Denoising  Electroencephalography  Muscle Artifact Removal