default search action
Lijun Zhao 0003
Person information
- affiliation: Harbin Institute of Technology, Harbin, China
Other persons with the same name
- Lijun Zhao (aka: Li-jun Zhao, Li-Jun Zhao) — disambiguation page
- Lijun Zhao 0001 (aka: Li-jun Zhao 0001, Li-Jun Zhao 0001) — Chinese Academy of Sciences, Institute of Remote Sensing and Digital Earth, Beijing, China
- Lijun Zhao 0002 — Taiyuan University of Science and Technology, Institute of Digital Media and Communication, China (and 1 more)
- Lijun Zhao 0004 — Army Special Operations College, China
Refine list
refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2025
- [j35]Tao Xie, Qihao Sun, Tao Sun, Jinhang Zhang, Kun Dai, Lijun Zhao, Ke Wang, Ruifeng Li:
DVDS: A deep visual dynamic slam system. Expert Syst. Appl. 260: 125438 (2025) - 2024
- [j34]Kun Dai, Tao Xie, Ke Wang, Zhiqiang Jiang, Ruifeng Li, Lijun Zhao:
FMAP: Learning robust and accurate local feature matching with anchor points. Expert Syst. Appl. 236: 121328 (2024) - [j33]Tao Xie, Kun Dai, Ke Wang, Ruifeng Li, Lijun Zhao:
DeepMatcher: A deep transformer-based network for robust and accurate local feature matching. Expert Syst. Appl. 237(Part A): 121361 (2024) - [j32]Jianhua Yang, Ke Wang, Lijun Zhao, Zhiqiang Jiang, Ruifeng Li:
ActionMixer: Temporal action detection with Optimal Action Segment Assignment and mixers. Expert Syst. Appl. 237(Part B): 121330 (2024) - [j31]Hongbo Gao, Kun Dai, Ke Wang, Ruifeng Li, Lijun Zhao, Mengyuan Wu:
ALNet: An adaptive channel attention network with local discrepancy perception for accurate indoor visual localization. Expert Syst. Appl. 250: 123792 (2024) - [j30]Jinghan Gao, Tao Xie, Ruifeng Li, Ke Wang, Lijun Zhao:
APM: Adaptive parameter multiplexing for class incremental learning. Expert Syst. Appl. 258: 125135 (2024) - [j29]Hainan Luo, Tao Xie, Ao Wang, Kun Dai, Chuqing Cao, Lijun Zhao:
CorMatcher: A corners-guided graph neural network for local feature matching. Expert Syst. Appl. 258: 125190 (2024) - [j28]Tao Xie, Kun Dai, Qihao Sun, Zhiqiang Jiang, Chuqing Cao, Lijun Zhao, Ke Wang, Ruifeng Li:
CO-Net++: A Cohesive Network for Multiple Point Cloud Tasks at Once With Two-Stage Feature Rectification. IEEE Trans. Pattern Anal. Mach. Intell. 46(12): 10911-10928 (2024) - [j27]Kun Dai, Tao Xie, Ke Wang, Zhiqiang Jiang, Ruifeng Li, Lijun Zhao:
OAMatcher: An overlapping areas-based network with label credibility for robust and accurate feature matching. Pattern Recognit. 147: 110094 (2024) - [j26]Jie Xu, Song Huang, Shuxin Qiu, Lijun Zhao, Wenlu Yu, Mingxing Fang, Minhang Wang, Ruifeng Li:
LiDAR-Link: Observability-Aware Probabilistic Plane-Based Extrinsic Calibration for Non-Overlapping Solid-State LiDARs. IEEE Robotics Autom. Lett. 9(3): 2590-2597 (2024) - [j25]Ke Wang, Zhiqiang Jiang, Kun Dai, Tao Xie, Ducheng Jin, Ruifeng Li, Lijun Zhao, Xiao Chen:
SACNet: A Scattered Attention-Based Network With Feature Compensator for Visual Localization. IEEE Robotics Autom. Lett. 9(4): 3586-3593 (2024) - [j24]Xiaoyu Li, Dedong Liu, Yitao Wu, Xian Wu, Lijun Zhao, Jinghan Gao:
Fast-Poly: A Fast Polyhedral Algorithm for 3D Multi-Object Tracking. IEEE Robotics Autom. Lett. 9(11): 10519-10526 (2024) - [j23]Lijun Zhao, Xin Deng, Ruifeng Li, Xichun Gui, Jingwen Sun, Tuoxi Li, Bo Zhang:
Graph-Based Robust Localization of Object-Level Map for Mobile Robotic Navigation. IEEE Trans. Ind. Electron. 71(1): 697-707 (2024) - [j22]Kun Dai, Ke Wang, Tao Xie, Tao Sun, Jinhang Zhang, Qingjia Kong, Zhiqiang Jiang, Ruifeng Li, Lijun Zhao, Mohamed Omar:
DSAP: Dynamic Sparse Attention Perception Matcher for Accurate Local Feature Matching. IEEE Trans. Instrum. Meas. 73: 1-16 (2024) - [j21]Zhiqiang Jiang, Ke Wang, Qingjia Kong, Kun Dai, Tao Xie, Zhonghao Qin, Ruifeng Li, Petra Perner, Lijun Zhao:
MR-Matcher: A Multirouting Transformer-Based Network for Accurate Local Feature Matching. IEEE Trans. Instrum. Meas. 73: 1-15 (2024) - [i7]Xiaoyu Li, Dedong Liu, Lijun Zhao, Yitao Wu, Xian Wu, Jinghan Gao:
Fast-Poly: A Fast Polyhedral Framework For 3D Multi-Object Tracking. CoRR abs/2403.13443 (2024) - [i6]Wenlu Yu, Jie Xu, Chengwei Zhao, Lijun Zhao, Thien-Minh Nguyen, Shenghai Yuan, Mingming Bai, Lihua Xie:
I2EKF-LO: A Dual-Iteration Extended Kalman Filter Based LiDAR Odometry. CoRR abs/2407.02190 (2024) - [i5]Xiaoyu Li, Peidong Li, Lijun Zhao, Dedong Liu, Jinghan Gao, Xian Wu, Yitao Wu, Dixiao Cui:
RockTrack: A 3D Robust Multi-Camera-Ken Multi-Object Tracking Framework. CoRR abs/2409.11749 (2024) - 2023
- [j20]Zhiheng Liu, Ruifeng Li, Lijun Zhao, Yi Xia, Zhonghao Qin, Kui Zhu:
Automatic joint motion planning of 9-DOF robot based on redundancy optimization for wheel hub polishing. Robotics Comput. Integr. Manuf. 81: 102500 (2023) - [j19]Tao Xie, Zhiqiang Jiang, Shuozhan Li, Yukun Zhang, Kun Dai, Ke Wang, Ruifeng Li, Lijun Zhao:
UFVL-Net: A Unified Framework for Visual Localization Across Multiple Indoor Scenes. IEEE Trans. Instrum. Meas. 72: 1-16 (2023) - [j18]Jie Xu, Ruifeng Li, Song Huang, Xiongwei Zhao, Shuxin Qiu, Zhijun Chen, Lijun Zhao:
R2DIO: A Robust and Real-Time Depth-Inertial Odometry Leveraging Multimodal Constraints for Challenging Environments. IEEE Trans. Instrum. Meas. 72: 1-11 (2023) - [j17]Xinyu Zhang, Li Wang, Guoxin Zhang, Tianwei Lan, Haoming Zhang, Lijun Zhao, Jun Li, Lei Zhu, Huaping Liu:
RI-Fusion: 3D Object Detection Using Enhanced Point Features With Range-Image Fusion for Autonomous Driving. IEEE Trans. Instrum. Meas. 72: 1-13 (2023) - [j16]Tao Xie, Haoming Zhang, Linqi Yang, Ke Wang, Kun Dai, Ruifeng Li, Lijun Zhao:
Point-NAS: A Novel Neural Architecture Search Framework for Point Cloud Analysis. IEEE Trans. Image Process. 32: 6526-6542 (2023) - [j15]Li Wang, Xinyu Zhang, Ziying Song, Jiangfeng Bi, Guoxin Zhang, Haiyue Wei, Liyao Tang, Lei Yang, Jun Li, Caiyan Jia, Lijun Zhao:
Multi-Modal 3D Object Detection in Autonomous Driving: A Survey and Taxonomy. IEEE Trans. Intell. Veh. 8(7): 3781-3798 (2023) - [j14]Li Wang, Xinyu Zhang, Jun Li, Baowei Xv, Rong Fu, Haifeng Chen, Lei Yang, Dafeng Jin, Lijun Zhao:
Multi-Modal and Multi-Scale Fusion 3D Object Detection of 4D Radar and LiDAR for Autonomous Driving. IEEE Trans. Veh. Technol. 72(5): 5628-5641 (2023) - [c22]Tao Xie, Ke Wang, Siyi Lu, Yukun Zhang, Kun Dai, Xiaoyu Li, Jie Xu, Li Wang, Lijun Zhao, Xinyu Zhang, Ruifeng Li:
CO-Net: Learning Multiple Point Cloud Tasks at Once with A Cohesive Network. ICCV 2023: 3500-3510 - [c21]Tao Xie, Kun Dai, Siyi Lu, Ke Wang, Zhiqiang Jiang, Jinghan Gao, Dedong Liu, Jie Xu, Lijun Zhao, Ruifeng Li:
OFVL-MS: Once for Visual Localization across Multiple Indoor Scenes. ICCV 2023: 5493-5503 - [c20]Xiaoyu Li, Tao Xie, Dedong Liu, Jinghan Gao, Kun Dai, Zhiqiang Jiang, Lijun Zhao, Ke Wang:
Poly-MOT: A Polyhedral Framework For 3D Multi-Object Tracking. IROS 2023: 9391-9398 - [c19]Tao Xie, Ruifeng Li, Zhiqiang Jiang, Kun Dai, Ke Wang, Lijun Zhao, Shuozhan Li:
S2H-GNN: Learning Soft to Hard Feature Matching with Sparsified Graph Neural Network. RCAR 2023: 756-761 - [i4]Tao Xie, Kun Dai, Ke Wang, Ruifeng Li, Lijun Zhao:
DeepMatcher: A Deep Transformer-based Network for Robust and Accurate Local Feature Matching. CoRR abs/2301.02993 (2023) - [i3]Kun Dai, Tao Xie, Ke Wang, Zhiqiang Jiang, Ruifeng Li, Lijun Zhao:
OAMatcher: An Overlapping Areas-based Network for Accurate Local Feature Matching. CoRR abs/2302.05846 (2023) - [i2]Xiaoyu Li, Tao Xie, Dedong Liu, Jinghan Gao, Kun Dai, Zhiqiang Jiang, Lijun Zhao, Ke Wang:
Poly-MOT: A Polyhedral Framework For 3D Multi-Object Tracking. CoRR abs/2307.16675 (2023) - [i1]Tao Xie, Kun Dai, Siyi Lu, Ke Wang, Zhiqiang Jiang, Jinghan Gao, Dedong Liu, Jie Xu, Lijun Zhao, Ruifeng Li:
OFVL-MS: Once for Visual Localization across Multiple Indoor Scenes. CoRR abs/2308.11928 (2023) - 2022
- [j13]Tao Xie, Ke Wang, Ruifeng Li, Xinyue Tang, Lijun Zhao:
PANet: A Pixel-Level Attention Network for 6D Pose Estimation With Embedding Vector Features. IEEE Robotics Autom. Lett. 7(2): 1840-1847 (2022) - [j12]Tao Xie, Kun Dai, Ke Wang, Ruifeng Li, Jiahe Wang, Xinyue Tang, Lijun Zhao:
A Deep Feature Aggregation Network for Accurate Indoor Camera Localization. IEEE Robotics Autom. Lett. 7(2): 3687-3694 (2022) - [j11]Jie Xu, Ruifeng Li, Lijun Zhao, Wenlu Yu, Zhiheng Liu, Bo Zhang, Yuchen Li:
CamMap: Extrinsic Calibration of Non-Overlapping Cameras Based on SLAM Map Alignment. IEEE Robotics Autom. Lett. 7(4): 11879-11885 (2022) - [c18]Haozheng Qian, Mingxing Fang, Jinhua She, Lijun Zhao, Youwu Du, Xiao Liang:
Adaptive Update Tracking Algorithm for Fast Motion Object. IECON 2022: 1-4 - [c17]Ziying Song, Li Wang, Guoxin Zhang, Caiyan Jia, Jiangfeng Bi, Haiyue Wei, Yongchao Xia, Chao Zhang, Lijun Zhao:
Fast Detection of Multi-Direction Remote Sensing Ship Object Based on Scale Space Pyramid. MSN 2022: 1019-1024 - 2021
- [j10]Xin Deng, Ruifeng Li, Lijun Zhao, Ke Wang, Xichun Gui:
Multi-obstacle path planning and optimization for mobile robot. Expert Syst. Appl. 183: 115445 (2021) - [j9]Zhi Qiao, Lijun Zhao, Xinkai Jiang, Le Gu, Ruifeng Li:
A Navigation Probability Map in Pedestrian Dynamic Environment Based on Influencer Recognition Model. Sensors 21(1): 19 (2021) - [j8]Jianzhang Zheng, Xuan Tang, Xian Wei, Hao Shen, Lijun Zhao:
Channel Assignment for Hybrid NOMA Systems With Deep Reinforcement Learning. IEEE Wirel. Commun. Lett. 10(7): 1370-1374 (2021) - 2020
- [j7]Feifei Bian, Danmei Ren, Ruifeng Li, Peidong Liang, Ke Wang, Lijun Zhao:
Dynamical system based variable admittance control for physical human-robot interaction. Ind. Robot 47(4): 623-635 (2020) - [j6]Xunwei Tong, Ruifeng Li, Lianzheng Ge, Lijun Zhao, Ke Wang:
A New Edge Patch with Rotation Invariance for Object Detection and Pose Estimation. Sensors 20(3): 887 (2020)
2010 – 2019
- 2019
- [j5]Li Wang, Ruifeng Li, Hezi Shi, Jingwen Sun, Lijun Zhao, Hock Soon Seah, Chee Kwang Quah, Budianto Tandianus:
Multi-Channel Convolutional Neural Network Based 3D Object Detection for Indoor Robot Environmental Perception. Sensors 19(4): 893 (2019) - [j4]Li Wang, Ruifeng Li, Jingwen Sun, Xingxing Liu, Lijun Zhao, Hock Soon Seah, Chee Kwang Quah, Budianto Tandianus:
Multi-View Fusion-Based 3D Object Detection for Robot Indoor Scene Perception. Sensors 19(19): 4092 (2019) - [c16]Lijun Zhao, Yu Liu, Xinkai Jiang, Ke Wang, Zigeng Zhou:
Indoor Environment RGB-DT Mapping for Security Mobile Robots. ICIRA (4) 2019: 131-141 - [c15]Jingwen Sun, Lijun Zhao, Ke Wang, Yujia Zhao, Xiangbo Meng, Chuwei Mao, Jiancheng Wang:
A Visual Calibration Method of Monocular Camera and Pan-Tilt for Mobile Robots. RCAR 2019: 907-912 - [c14]Li Wang, Ruifeng Li, Jingwen Sun, Lijun Zhao, Hezi Shi, Hock Soon Seah, Budianto Tandianus:
Object-Aware Hybrid Map for Indoor Robot Visual Semantic Navigation. ROBIO 2019: 1166-1172 - 2018
- [j3]Li Wang, Lijun Zhao, Guanglei Huo, Ruifeng Li, Zhenghua Hou, Pan Luo, Zhenye Sun, Ke Wang, Chenguang Yang:
Visual Semantic Navigation Based on Deep Learning for Indoor Mobile Robots. Complex. 2018: 1627185:1-1627185:12 (2018) - [j2]Yang Xu, Chenguang Yang, Junpei Zhong, Ning Wang, Lijun Zhao:
Robot teaching by teleoperation based on visual interaction and extreme learning machine. Neurocomputing 275: 2093-2103 (2018) - [c13]Li Wang, Ruifeng Li, Jingwen Sun, Hock Soon Seah, Chee Kwang Quah, Lijun Zhao:
Feature-Based and Convolutional Neural Network Fusion Method for Visual Relocalization. ICARCV 2018: 1489-1495 - [c12]Feifei Bian, Ruifeng Li, Lijun Zhao, Yihuan Liu, Peidong Liang:
Interface Design of a Human-Robot Interaction System for Dual-Manipulators Teleoperation Based on Virtual Reality. ICIA 2018: 1361-1366 - [c11]Lijun Zhao, Pan Luo, Zhiqiang Zhao, Liang Dong:
Indoor Environment Semantic Topological Mapping Based on Deep Learning. RCAR 2018: 520-525 - 2017
- [j1]Ke Wang, Xuexiong Long, Rui-Feng Li, Lijun Zhao:
A discriminative algorithm for indoor place recognition based on clustering of features and images. Int. J. Autom. Comput. 14(4): 407-419 (2017) - [c10]Li Wang, Ruifeng Li, Lijun Zhao, Zhenghua Hou, Xiaoyu Li, Zhenye Sun:
Research on service robots robust relocalization algorithm based on 2D/3D map of indoor environment. ICAR 2017: 572-577 - [c9]Lijun Zhao, Xiaoyu Li, Zhenye Sun, Ke Wang, Chenguang Yang:
A robot navigation method based on human-robot interaction for 3D environment mapping. RCAR 2017: 409-414 - 2016
- [c8]Lijun Zhao, Yihuan Liu, Ke Wang, Peidong Liang, Ruifeng Li:
An intuitive human robot interface for tele-operation. RCAR 2016: 454-459 - 2014
- [c7]Lijun Zhao, Zhaofeng Liu, Guanglei Huo, Ke Wang, Ruifeng Li:
Fast laser - based corridor detection for indoor mobile robots. ROBIO 2014: 849-854 - [c6]Ke Wang, Lijun Zhao, Ruifeng Li:
Fisheye omnidirectional camera calibration - Pinhole or spherical model? ROBIO 2014: 873-877 - [c5]Guanglei Huo, Ruifeng Li, Lijun Zhao, Ke Wang:
A novel fusion method for robot indoor environment mapping. ROBIO 2014: 2507-2510
2000 – 2009
- 2008
- [c4]Lianzheng Ge, Ruifeng Li, Dianyong Yu, Lijun Zhao:
A Nonlinear Adaptive Variable Structure Trajectory Tracking Algorithm for Mobile Robots. ICIRA (1) 2008: 892-900 - [c3]Lijun Zhao, Ruifeng Li, Tianying Zang, Lining Sun, Xufeng Fan:
A Method of Landmark Visual Tracking for Mobile Robot. ICIRA (1) 2008: 901-910 - 2007
- [c2]Ruifeng Li, Lijun Zhao, Lianzheng Ge, Lining Sun, Tong Gao:
The development of a general type of security robot. ROBIO 2007: 47-52 - [c1]Lianzheng Ge, Ruifeng Li, Lijun Zhao:
A nonlinear trajectory tracking algorithm design based on second-order sliding mode control for mobile robots. ROBIO 2007: 1184-1189
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).
Privacy notice: By enabling the option above, your browser will contact the API of 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.
OpenAlex data
Load additional information about publications from .
Privacy notice: By enabling the option above, your browser will contact the API of openalex.org to load additional 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 information given by OpenAlex.
last updated on 2024-11-22 20:38 CET by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint