
Yongzhen Huang
Refine list

refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2020
- [j25]Rijun Liao, Shiqi Yu, Weizhi An, Yongzhen Huang:
A model-based gait recognition method with body pose and human prior knowledge. Pattern Recognit. 98 (2020) - [j24]Yuqi Zhang
, Yongzhen Huang
, Shiqi Yu, Liang Wang:
Cross-View Gait Recognition by Discriminative Feature Learning. IEEE Trans. Image Process. 29: 1001-1015 (2020) - [c52]Chao Fan, Yunjie Peng, Chunshui Cao, Xu Liu, Saihui Hou, Jiannan Chi, Yongzhen Huang, Qing Li, Zhiqiang He:
GaitPart: Temporal Part-Based Model for Gait Recognition. CVPR 2020: 14213-14221 - [c51]Saihui Hou
, Chunshui Cao
, Xu Liu
, Yongzhen Huang
:
Gait Lateral Network: Learning Discriminative and Compact Representations for Gait Recognition. ECCV (9) 2020: 382-398 - [c50]Rijun Liao, Weizhi An, Shiqi Yu, Zhu Li, Yongzhen Huang:
Dense-View GEIs Set: View Space Covering for Gait Recognition based on Dense-View GAN. IJCB 2020: 1-9 - [i4]Rijun Liao, Weizhi An, Shiqi Yu, Zhu Li, Yongzhen Huang:
Dense-View GEIs Set: View Space Covering for Gait Recognition based on Dense-View GAN. CoRR abs/2009.12516 (2020)
2010 – 2019
- 2019
- [j23]Chunshui Cao
, Yongzhen Huang
, Yi Yang, Liang Wang, Zilei Wang
, Tieniu Tan:
Feedback Convolutional Neural Network for Visual Localization and Segmentation. IEEE Trans. Pattern Anal. Mach. Intell. 41(7): 1627-1640 (2019) - [j22]Shiqi Yu, Rijun Liao, Weizhi An, Haifeng Chen, Edel B. García Reyes, Yongzhen Huang, Norman Poh:
GaitGANv2: Invariant gait feature extraction using generative adversarial networks. Pattern Recognit. 87: 179-189 (2019) - [j21]Yuqi Zhang, Yongzhen Huang, Liang Wang, Shiqi Yu:
A comprehensive study on gait biometrics using a joint CNN-based method. Pattern Recognit. 93: 228-236 (2019) - [j20]Chunfeng Song
, Yongzhen Huang, Yan Huang, Ning Jia, Liang Wang:
GaitNet: An end-to-end network for gait based human identification. Pattern Recognit. 96 (2019) - [c49]Xinhui Wu, Shiqi Yu, Yongzhen Huang:
Multiscale Temporal Network for Video-Based Gait Recognition. CCBR 2019: 75-83 - [i3]Weiyu Guo, Jiabin Ma, Liang Wang, Yongzhen Huang:
Learning Efficient Convolutional Networks through Irregular Convolutional Kernels. CoRR abs/1909.13239 (2019) - 2018
- [j19]Yongzhen Huang, Xiuwen Ma, Yuede Yang, Jinlong Xiao, Yun Du:
Hybrid-cavity semiconductor lasers with a whispering-gallery cavity for controlling Q factor. Sci. China Inf. Sci. 61(8): 080401:1-080401:13 (2018) - [j18]Yucan Zhou
, Yongzhen Huang
, Qinghua Hu
, Liang Wang:
Kernel-Based Semantic Hashing for Gait Retrieval. IEEE Trans. Circuits Syst. Video Technol. 28(10): 2742-2752 (2018) - [j17]Jingyu Liu, Yongzhen Huang
, Junran Peng, Jun Yao, Liang Wang:
Fast Object Detection at Constrained Energy. IEEE Trans. Emerg. Top. Comput. 6(3): 409-416 (2018) - [c48]Chunshui Cao, Yongzhen Huang, Zilei Wang, Liang Wang, Ninglong Xu, Tieniu Tan:
Lateral Inhibition-Inspired Convolutional Neural Network for Visual Attention and Saliency Detection. AAAI 2018: 6690-6697 - [c47]Weizhi An, Rijun Liao, Shiqi Yu
, Yongzhen Huang, Pong C. Yuen:
Improving Gait Recognition with 3D Pose Estimation. CCBR 2018: 137-147 - 2017
- [j16]Shiqi Yu
, Haifeng Chen, Qing Wang, Linlin Shen, Yongzhen Huang:
Invariant feature extraction for gait recognition using only one uniform model. Neurocomputing 239: 81-93 (2017) - [j15]Zifeng Wu, Yongzhen Huang, Liang Wang, Xiaogang Wang, Tieniu Tan:
A Comprehensive Study on Cross-View Gait Based Human Identification with Deep CNNs. IEEE Trans. Pattern Anal. Mach. Intell. 39(2): 209-226 (2017) - [j14]Zhen Zhou, Yongzhen Huang, Liang Wang, Tieniu Tan:
Exploring generalized shape analysis by topological representations. Pattern Recognit. Lett. 87: 177-185 (2017) - [j13]Kaihao Zhang
, Yongzhen Huang
, Yong Du, Liang Wang:
Facial Expression Recognition Based on Deep Evolutional Spatial-Temporal Networks. IEEE Trans. Image Process. 26(9): 4193-4203 (2017) - [c46]Yuqi Zhang, Yongzhen Huang, Liang Wang:
Multi-task Deep Learning for Fast Online Multiple Object Tracking. ACPR 2017: 138-143 - [c45]Siwei Lyu, Ming-Ching Chang, Dawei Du, Longyin Wen, Honggang Qi, Yuezun Li, Yi Wei, Lipeng Ke, Tao Hu, Marco Del Coco, Pierluigi Carcagnì, Dmitriy Anisimov, Erik Bochinski, Fabio Galasso
, Filiz Bunyak, Guang Han, Hao Ye, Hong Wang, Kannappan Palaniappan, Koray Ozcan, Li Wang, Liang Wang, Martin Lauer, Nattachai Watcharapinchai
, Nenghui Song, Noor M. Al-Shakarji, Shuo Wang, Sikandar Amin, Sitapa Rujikietgumjorn, Tatiana Khanova, Thomas Sikora, Tino Kutschbach, Volker Eiselein, Wei Tian
, Xiangyang Xue, Xiaoyi Yu, Yao Lu, Yingbin Zheng
, Yongzhen Huang, Yuqi Zhang:
UA-DETRAC 2017: Report of AVSS2017 & IWT4S Challenge on Advanced Traffic Monitoring. AVSS 2017: 1-7 - [c44]Rijun Liao, Chunshui Cao, Edel B. García Reyes, Shiqi Yu
, Yongzhen Huang:
Pose-Based Temporal-Spatial Network (PTSN) for Gait Recognition with Carrying and Clothing Variations. CCBR 2017: 474-483 - 2016
- [j12]Fang Zhao, Yongzhen Huang, Liang Wang, Tao Xiang, Tieniu Tan:
Learning Relevance Restricted Boltzmann Machine for Unstructured Group Activity and Event Understanding. Int. J. Comput. Vis. 119(3): 329-345 (2016) - [j11]Jianwei Ding, Yunqi Tang, Huawei Tian, Wei Liu, Yongzhen Huang:
Robust tracking with adaptive appearance learning and occlusion detection. Multim. Syst. 22(2): 255-269 (2016) - [j10]Jianwei Ding, Yongzhen Huang, Wei Liu, Kaiqi Huang:
Severely Blurred Object Tracking by Learning Deep Image Representations. IEEE Trans. Circuits Syst. Video Technol. 26(2): 319-331 (2016) - [j9]Shu Wu, Weiyu Guo, Song Xu
, Yongzhen Huang, Liang Wang, Tieniu Tan:
Coupled Topic Model for Collaborative Filtering With User-Generated Content. IEEE Trans. Hum. Mach. Syst. 46(6): 908-920 (2016) - [c43]Muhammad Rauf, Yongzhen Huang, Liang Wang:
Gait Retrieval: A Deep Hashing Method for People Retrieval in Video. CCPR (1) 2016: 383-391 - [c42]Yuqi Zhang, Yongzhen Huang, Liang Wang:
What makes for good multiple object trackers? DSP 2016: 467-471 - [c41]Muhammad Rauf, Chunfeng Song, Yongzhen Huang, Liang Wang, Ning Jia:
Knowledge transfer between networks and its application on gait recognition. DSP 2016: 492-496 - [c40]Kaihao Zhang, Yongzhen Huang, Ran He, Hong Wu, Liang Wang:
Localize heavily occluded human faces via deep segmentation. ICIP 2016: 2311-2315 - [c39]Shiqi Yu
, Qing Wang, LinLin Shen, Yongzhen Huang:
View invariant gait recognition using only one uniform model. ICPR 2016: 889-894 - 2015
- [j8]Jianwei Ding, Yunqi Tang, Wei Liu, Yongzhen Huang, Kaiqi Huang:
Tracking by local structural manifold learning in a new SSIR particle filter. Neurocomputing 161: 277-289 (2015) - [j7]Zifeng Wu, Yongzhen Huang, Liang Wang:
Learning Representative Deep Features for Image Set Analysis. IEEE Trans. Multim. 17(11): 1960-1968 (2015) - [c38]Chunfeng Song, Yongzhen Huang, Zhenyu Wang, Liang Wang:
1000fps human segmentation with deep convolutional neural networks. ACPR 2015: 474-478 - [c37]Kaihao Zhang, Yongzhen Huang, Hong Wu, Liang Wang:
Facial smile detection based on deep learning features. ACPR 2015: 534-538 - [c36]Kaihao Zhang, Yongzhen Huang, Chunfeng Song, Hong Wu, Liang Wang:
Kinship Verification with Deep Convolutional Neural Networks. BMVC 2015: 148.1-148.12 - [c35]Wei Tang, Yongzhen Huang, Liang Wang:
1000 Fps Highly Accurate Eye Detection with Stacked Denoising Autoencoder. CCCV (2) 2015: 237-246 - [c34]Feng Liu, Yongzhen Huang, Wankou Yang, Changyin Sun:
High-level spatial modeling in convolutional neural network with application to pedestrian detection. CCECE 2015: 778-783 - [c33]Fang Zhao, Yongzhen Huang, Liang Wang, Tieniu Tan:
Deep semantic ranking based hashing for multi-label image retrieval. CVPR 2015: 1556-1564 - [c32]Yung-Hsiang Lu, Alan M. Kadin, Alexander C. Berg, Thomas M. Conte, Erik P. DeBenedictis, Rachit Garg, Ganesh Gingade, Bichlien Hoang, Yongzhen Huang, Boxun Li, Jingyu Liu, Wei Liu, Huizi Mao, Junran Peng, Tianqi Tang, Elie K. Track, Jingqiu Wang, Tao Wang, Yu Wang, Jun Yao:
Rebooting Computing and Low-Power Image Recognition Challenge. ICCAD 2015: 927-932 - [c31]Chunshui Cao, Xianming Liu, Yi Yang, Yinan Yu, Jiang Wang, Zilei Wang, Yongzhen Huang, Liang Wang, Chang Huang, Wei Xu, Deva Ramanan, Thomas S. Huang:
Look and Think Twice: Capturing Top-Down Visual Attention with Feedback Convolutional Neural Networks. ICCV 2015: 2956-2964 - [c30]Jingyu Liu, Yongzhen Huang, Xiaojiang Peng, Liang Wang:
Multi-view descriptor mining via codeword net for action recognition. ICIP 2015: 793-797 - [i2]Wenjuan Gong
, Yongzhen Huang, Jordi Gonzàlez, Liang Wang:
Enhanced Mixtures of Part Model for Human Pose Estimation. CoRR abs/1501.05382 (2015) - [i1]Fang Zhao, Yongzhen Huang, Liang Wang, Tieniu Tan:
Deep Semantic Ranking Based Hashing for Multi-Label Image Retrieval. CoRR abs/1501.06272 (2015) - 2014
- [b1]Yongzhen Huang, Tieniu Tan:
Feature Coding for Image Representation and Recognition. Springer Briefs in Computer Science, Springer 2014, ISBN 978-3-662-44999-8, pp. 1-74 - [j6]Chunfeng Song, Yongzhen Huang, Feng Liu, Zhenyu Wang, Liang Wang:
Deep auto-encoder based clustering. Intell. Data Anal. 18(Supplement): S65-S76 (2014) - [j5]Yongzhen Huang, Zifeng Wu, Liang Wang, Chunfeng Song:
Multiple spatial pooling for visual object recognition. Neurocomputing 129: 225-231 (2014) - [j4]Feng Liu, Yongzhen Huang, Liang Wang, Wankou Yang, Changyin Sun:
Spatial modeling via feature co-pooling and SG grafting. Neurocomputing 139: 415-422 (2014) - [j3]Jingyu Liu, Yongzhen Huang, Liang Wang, Shu Wu:
Hierarchical feature coding for image classification. Neurocomputing 144: 509-515 (2014) - [j2]Yongzhen Huang, Zifeng Wu, Liang Wang, Tieniu Tan:
Feature Coding in Image Classification: A Comprehensive Study. IEEE Trans. Pattern Anal. Mach. Intell. 36(3): 493-506 (2014) - [c29]Muhammad Rauf, Yongzhen Huang, Liang Wang:
Encoding Optimization Using Nearest Neighbor Descriptor. CCPR (2) 2014: 81-88 - [c28]Jianwei Ding, Yunqi Tang, Huawei Tian, Yongzhen Huang:
Robust Appearance Learning for Object Tracking in Challenging Scenes. CCPR (2) 2014: 218-227 - [c27]Di Miao, Zhenan Sun, Yongzhen Huang:
Fusion of Multibiometrics Based on a New Robust Linear Programming. ICPR 2014: 291-296 - [c26]Zifeng Wu, Yongzhen Huang, Yinan Yu, Liang Wang, Tieniu Tan:
Early Hierarchical Contexts Learned by Convolutional Networks for Image Segmentation. ICPR 2014: 1538-1543 - 2013
- [c25]Shiqi Yu
, Qing Wang, Yongzhen Huang:
A Large RGB-D Gait Dataset and the Baseline Algorithm. CCBR 2013: 417-424 - [c24]Tieniu Tan, Yongzhen Huang, Junge Zhang:
Recent Progress on Object Classification and Detection. CIARP (2) 2013: 1-8 - [c23]Chunfeng Song, Feng Liu, Yongzhen Huang, Liang Wang, Tieniu Tan:
Auto-encoder Based Data Clustering. CIARP (1) 2013: 117-124 - [c22]Fang Zhao, Yongzhen Huang, Liang Wang, Tieniu Tan:
Discovering compact topical descriptors for web video retrieval. ICIP 2013: 2679-2683 - [c21]Zhen Zhou, Yongzhen Huang, Liang Wang, Tieniu Tan:
Depth-embedded multiple pooling for image classification. ICIP 2013: 4335-4339 - [c20]Feng Liu, Yongzhen Huang, Liang Wang, Wankou Yang:
Boosting Deformable Part Model by Sample Sharing and Outlier Ablation. IScIDE 2013: 418-426 - [c19]Yu Xia, Yongzhen Huang, Liang Wang, Xin Geng:
Pedestrian Detection Based on Incremental Learning. IScIDE 2013: 603-610 - [c18]Fang Zhao, Yongzhen Huang, Liang Wang, Tieniu Tan:
Relevance Topic Model for Unstructured Social Group Activity Recognition. NIPS 2013: 2580-2588 - 2012
- [c17]Junge Zhang, Yongzhen Huang, Kaiqi Huang, Zifeng Wu, Tieniu Tan:
Data Decomposition and Spatial Mixture Modeling for Part Based Model. ACCV (1) 2012: 123-137 - [c16]Weiqiang Ren, Yongzhen Huang, Xin Zhao, Kaiqi Huang, Tieniu Tan:
Local Hypersphere Coding Based on Edges between Visual Words. ACCV (1) 2012: 190-203 - [c15]Zifeng Wu, Yongzhen Huang, Liang Wang, Tieniu Tan:
Contextual Pooling in Image Classification. ACCV (1) 2012: 704-715 - [c14]Zifeng Wu, Yongzhen Huang, Liang Wang, Tieniu Tan:
Spatial Graph for Image Classification. ACCV (1) 2012: 716-729 - [c13]Yinan Yu, Weiqiang Ren, Yongzhen Huang, Kaiqi Huang, Tieniu Tan:
CLUMOC: Multiple Motion Estimation by Cluster Motion Consensus. AVSS 2012: 172-177 - [c12]Xin Zhao, Yinan Yu, Yongzhen Huang, Kaiqi Huang, Tieniu Tan:
Feature coding via vector difference for image classification. ICIP 2012: 3121-3124 - [c11]Zifeng Wu, Yongzhen Huang, Liang Wang, Tieniu Tan:
Group encoding of local features in image classification. ICPR 2012: 1505-1508 - [c10]Junge Zhang, Xin Zhao, Yongzhen Huang, Kaiqi Huang, Tieniu Tan:
Semantic windows mining in sliding window based object detection. ICPR 2012: 3264-3267 - 2011
- [j1]Yongzhen Huang, Kaiqi Huang, Dacheng Tao, Tieniu Tan, Xuelong Li
:
Enhanced Biologically Inspired Model for Object Recognition. IEEE Trans. Syst. Man Cybern. Part B 41(6): 1668-1680 (2011) - [c9]Yongzhen Huang, Kaiqi Huang, Chong Wang, Tieniu Tan:
Exploring relations of visual codes for image classification. CVPR 2011: 1649-1656 - [c8]Yongzhen Huang, Kaiqi Huang, Yinan Yu, Tieniu Tan:
Salient coding for image classification. CVPR 2011: 1753-1760 - [c7]Jianwei Ding, Yongzhen Huang, Kaiqi Huang, Tieniu Tan:
Robust object tracking via online learning of adaptive appearance manifold. ICCV Workshops 2011: 1863-1869 - 2010
- [c6]Yongzhen Huang, Kaiqi Huang, Tieniu Tan:
A Heuristic Deformable Pedestrian Detection Method. ACCV (2) 2010: 542-553
2000 – 2009
- 2009
- [c5]Yongzhen Huang, Kaiqi Huang, Tieniu Tan, Dacheng Tao:
A Novel Visual Organization Based on Topological Perception. ACCV (1) 2009: 180-189 - [c4]Liangsheng Wang, Kaiqi Huang, Yongzhen Huang, Tieniu Tan:
Object detection and tracking for night surveillance based on salient contrast analysis. ICIP 2009: 1113-1116 - [c3]Yongzhen Huang, Kaiqi Huang, Tieniu Tan:
Computational primitives of visual perception. ICIP 2009: 1793-1796 - [c2]Yeying Zhang, Kaiqi Huang, Yongzhen Huang, Tieniu Tan:
View-invariant action recognition using cross ratios across frames. ICIP 2009: 3549-3552 - 2008
- [c1]Yongzhen Huang, Kaiqi Huang, Liangsheng Wang, Dacheng Tao, Tieniu Tan, Xuelong Li
:
Enhanced biologically inspired model. CVPR 2008
Coauthor Index

manage site settings
To protect your privacy, all features that rely on external API calls from your browser are turned off by default. You need to opt-in for them to become active. All settings here will be stored as cookies with your web browser. For more information see our F.A.Q.
Unpaywalled article links
Add open access links from to the list of external document links (if available).
Privacy notice: By enabling the option above, your browser will contact the API of unpaywall.org to load hyperlinks to open access articles. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Unpaywall privacy policy.
Archived links via Wayback Machine
For web page which are no longer available, try to retrieve content from the of the Internet Archive (if available).
load content from web.archive.org
Privacy notice: By enabling the option above, your browser will contact the API of web.archive.org to check for archived content of web pages that are no longer available. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Internet Archive privacy policy.
Reference lists
Add a list of references from ,
, and
to record detail pages.
load references from crossref.org and opencitations.net
Privacy notice: By enabling the option above, your browser will contact the APIs of crossref.org, opencitations.net, and semanticscholar.org to load article reference information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Crossref privacy policy and the OpenCitations privacy policy, as well as the AI2 Privacy Policy covering Semantic Scholar.
Citation data
Add a list of citing articles from and
to record detail pages.
load citations from opencitations.net
Privacy notice: By enabling the option above, your browser will contact the API of opencitations.net and semanticscholar.org to load citation information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the OpenCitations privacy policy as well as the AI2 Privacy Policy covering Semantic Scholar.
Tweets on dblp homepage
Show tweets from on the dblp homepage.
Privacy notice: By enabling the option above, your browser will contact twitter.com and twimg.com to load tweets curated by our Twitter account. At the same time, Twitter will persistently store several cookies with your web browser. While we did signal Twitter to not track our users by setting the "dnt" flag, we do not have any control over how Twitter uses your data. So please proceed with care and consider checking the Twitter privacy policy.
last updated on 2021-02-19 21:25 CET by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint