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Hongbin Wang 0004
Person information
- affiliation: Yanshan University, Key Lab of Industrial Computer Control Engineering, Qinhuangdao, China
- affiliation (PhD 2005): Yanshan University, Institute of Electrical Engineering, China
Other persons with the same name
- Hongbin Wang (aka: Hong-Bin Wang) — disambiguation page
- Hongbin Wang 0001
— Harbin Engineering University, College of Computer Science and Technology, China
- Hongbin Wang 0002
— Kunming University of Science and Technology, Faculty of Information Engineering and Automation, China (and 1 more)
- Hongbin Wang 0003 — Texas A&M University, Center for Biomedical Informatics, College of Medicine, Houston, TX, USA (and 1 more)
- Hongbin Wang 0005 — Queen's University Belfast, Centre for Secure Information Technologies (CSIT), Institute of Electronics, UK
- Hongbin Wang 0006 — Ant Group, China
- Hongbin Wang 0007
— Army Engineering University of PLA, College of Communication Engineering, Nanjing, China
- Hongbin Wang 0008
— Harbin Institute of Technology, School of Mathematics, China
- Hongbin Wang 0009 — Huazhong University of Science and Technology, School of Artificial Intelligence and Automation, Wuhan, China
- Hongbin Wang 0010 — Yuncheng University, Department of Applied Mathematics, Shanxi, China
- Hongbin Wang 0011 — Northeast Agricultural University, School of Animal Medicine, Department of Veterinary Surgery, Harbin, China
- Hongbin Wang 0012
(aka: Hong-Bin Wang 0012) — Inner Mongolia University of Technology, College of Data Science and Application, Hohhot, China
- Hongbin Wang 0013
— Beijing Language and Culture University, Research Institute of International Chinese Language Education, China
- Hongbin Wang 0014
— Jiangshu Ocean University, School of Science, Lianyungang, China
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2020 – today
- 2023
- [j26]Ruolan Hao, Hongbin Wang, Wei Zheng:
Adaptive neural time-varying full-state constraints quantized consensus control for nonlinear multiagent networks systems without feasibility conditions. Neural Comput. Appl. 35(22): 16457-16472 (2023) - 2021
- [j25]Bo Su
, Hongbin Wang, Ning Li:
Event-triggered integral sliding mode fixed time control for trajectory tracking of autonomous underwater vehicle. Trans. Inst. Meas. Control 43(15) (2021) - 2020
- [j24]Wei Zheng, Zhiming Zhang, Hongbin Wang, Hongrui Wang:
Robust H∞ dynamic output feedback control for interval type-2 T-S fuzzy multiple time-varying delays systems with external disturbance. J. Frankl. Inst. 357(6): 3193-3218 (2020) - [j23]Wei Zheng, Zhiming Zhang
, Hongbin Wang, Shuhuan Wen, Hongrui Wang:
Stability analysis and dynamic output feedback control for fuzzy networked control systems with mixed time-varying delays and interval distributed time-varying delays. Neural Comput. Appl. 32(11): 7213-7234 (2020) - [j22]Hong Wang
, Hongbin Wang, Guoqian Jiang
, Yueling Wang, Shuang Ren:
A Multiscale Spatio-Temporal Convolutional Deep Belief Network for Sensor Fault Detection of Wind Turbine. Sensors 20(12): 3580 (2020)
2010 – 2019
- 2019
- [j21]Wei Zheng
, Hongbin Wang, Fuchun Sun, Xiaolei Li, Shuhuan Wen:
Finite-time control of mobile robot systems with unmeasurable angular and linear velocities via bioinspired neurodynamics approach. Appl. Soft Comput. 85 (2019) - [j20]Zhen Zhou, Hongbin Wang, Zhongquan Hu, Xiaojun Xue:
Finite Time stability of discrete Markovian jump System over Networks with Random Dual-delay. Mechatron. Syst. Control. 47(3) (2019) - [j19]Hongbin Wang
, Bo Su
, Yueling Wang
, Jing Gao:
Adaptive Sliding Mode Fixed-Time Tracking Control Based on Fixed-Time Sliding Mode Disturbance Observer with Dead-Zone Input. Complex. 2019: 8951382:1-8951382:14 (2019) - [j18]Wei Zheng, Hongbin Wang, Zhiming Zhang, Hongrui Wang:
Adaptive robust finite-time control of mobile robot systems with unmeasurable angular velocity via bioinspired neurodynamics approach. Eng. Appl. Artif. Intell. 82: 330-344 (2019) - [j17]Ce Hao, Yueling Wang, Hongbin Wang, Zhen Zhou:
Model-Free adaptive control for Time-varying trajectory tracking of non-linear Systems. Int. J. Robotics Autom. 34(1) (2019) - [j16]Shuhuan Wen, Di Zhang, Baowei Zhang, Hak-Keung Lam
, Hongbin Wang, Yongsheng Zhao:
Two-degree-of-freedom internal model position control and fuzzy fractional force control of nonlinear parallel robot. Int. J. Syst. Sci. 50(12): 2261-2279 (2019) - [j15]Wei Zheng
, Hongbin Wang, Hongrui Wang, Shuhuan Wen:
Stability analysis and dynamic output feedback controller design of T-S fuzzy systems with time-varying delays and external disturbances. J. Comput. Appl. Math. 358: 111-135 (2019) - [j14]Zhen Zhou
, Hongbin Wang, Yueling Wang, Xiaojun Xue, Mingquan Zhang:
Distributed formation control for multiple quadrotor UAVs under Markovian switching topologies with partially unknown transition rates. J. Frankl. Inst. 356(11): 5706-5728 (2019) - [j13]Zhen Zhou
, Hongbin Wang, Zhongquan Hu, Yueling Wang, Hong Wang:
A Multi-Time-Scale Finite Time Controller for the Quadrotor UAVs with Uncertainties. J. Intell. Robotic Syst. 94(2): 521-533 (2019) - [j12]Wei Zheng
, Hongbin Wang, Hongrui Wang, Shuhuan Wen:
Dynamic Output Feedback Control Based on Descriptor Redundancy Approach for Networked Control Systems With Multiple Mixed Time-Varying Delays and Unmatched Disturbances. IEEE Syst. J. 13(3): 2942-2953 (2019) - [j11]Wei Zheng
, Zhiming Zhang, Hongbin Wang, Shuhuan Wen, Hongrui Wang:
Adaptive state feedback control for nonlinear systems with multiple interval time-varying delays and non-symmetric dead-zone input: A Lyapunov-Krasovskii approach. Trans. Inst. Meas. Control 41(14): 3979-3990 (2019) - 2018
- [j10]Wei Zheng
, Hongbin Wang, Hongrui Wang, Shuhuan Wen, Zhi-Ming Zhang:
Fuzzy Dynamic Output Feedback Control for T-S Fuzzy Discrete-Time Systems With Multiple Time-Varying Delays and Unmatched Disturbances. IEEE Access 6: 31037-31049 (2018) - [j9]Ce Hao, Hongbin Wang
, Xiaoyan Cheng
, Zhen Zhou
, Shungang Ge, Zhongquan Hu:
Finite-Time Switched Second-Order Sliding-Mode Control of Nonholonomic Wheeled Mobile Robot Systems. Complex. 2018: 1430989:1-1430989:10 (2018) - [j8]Zhen Zhou
, Hongbin Wang
, Zhongquan Hu:
Event-Based Time Varying Formation Control for Multiple Quadrotor UAVs with Markovian Switching Topologies. Complex. 2018: 8124861:1-8124861:15 (2018) - [j7]Zhen Zhou, Hongbin Wang, Zhongquan Hu, Xiaojun Xue:
Event-triggered finite-time consensus of multiple Euler Lagrange systems under Markovian switching topologies. Int. J. Syst. Sci. 49(8): 1641-1653 (2018) - [j6]Wei Zheng
, Hongbin Wang, Changchun Hua, Zhiming Zhang, Hongrui Wang:
Dynamic output-feedback control for nonlinear continuous-time systems based on parametric uncertain subsystem and interval type-2 fuzzy model. J. Frankl. Inst. 355(16): 7962-7984 (2018) - 2017
- [j5]Wei Zheng
, Hongbin Wang, Shuhuan Wen, Hongrui Wang, Zhi-Ming Zhang:
Memoryless Dynamic Output-Feedback Stabilization for Discrete-Time Closed-Loop Robot Systems With Nonlinear Uncertainties and Multiple Time-Delays. IEEE Access 5: 13847-13856 (2017) - [j4]Hongbin Wang, Lili Ji, Zhen Zhou:
Eso-based consensus of Multiple Euler-Lagrange Systems under a fixed or switching Topology. Control. Intell. Syst. 45(2) (2017) - [j3]Shuhuan Wen, Baowei Zhang, Pengcheng Hao, Hak-Keung Lam
, Hongbin Wang:
Fuzzy fractional order force control of 6PUS-UPU redundantly actuated parallel robot based on inner model position control structure. Eng. Appl. Artif. Intell. 65: 200-211 (2017) - 2016
- [j2]Shuhuan Wen, Guiqian Qin, Baowei Zhang, Hak-Keung Lam
, Yongsheng Zhao, Hongbin Wang:
The study of model predictive control algorithm based on the force/position control scheme of the 5-DOF redundant actuation parallel robot. Robotics Auton. Syst. 79: 12-25 (2016)
2000 – 2009
- 2008
- [j1]Jinzhuang Xiao, Hongrui Wang, Hongbin Wang:
Knowledge Based Robotic Control against Saturation of Actuators Owing to Fuzzy Rules. Int. J. Pattern Recognit. Artif. Intell. 22(1): 183-194 (2008) - [c2]Li Cheng, Hongbin Wang, Yongsheng Zhao:
Analysis and Experimental Investigation of Parallel Machine Tool with Redundant Actuation. ICIRA (1) 2008: 179-188 - 2004
- [c1]Hongbin Wang, Chun-di Jiang, Hongrui Wang:
Fuzzy Neural Networks Observer for Robotic Manipulators Based on H∞ Approach. ISNN (2) 2004: 19-24
Coauthor Index

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