フォロー
Ming-Feng Ge (葛明峰)
Ming-Feng Ge (葛明峰)
IEEE Senior Member, Top 2% Worldwide Scientist, Professor, China University of Geosciences, Wuhan
確認したメール アドレス: cug.edu.cn - ホームページ
タイトル
引用先
引用先
A review on state of health estimations and remaining useful life prognostics of lithium-ion batteries
MF Ge, Y Liu, X Jiang, J Liu
Measurement 174, 109057, 2021
3342021
Data-driven fault diagnosis method based on compressed sensing and improved multiscale network
ZX Hu, Y Wang, MF Ge, J Liu
IEEE Transactions on Industrial Electronics 67 (4), 3216-3225, 2019
1962019
Finite-time synchronization of memristor chaotic systems and its application in image encryption
L Wang, T Dong, MF Ge
Applied Mathematics and Computation 347, 293-305, 2019
1832019
A disturbance rejection framework for finite-time and fixed-time stabilization of delayed memristive neural networks
L Wang, Z Zeng, MF Ge
IEEE Transactions on Systems, Man, and Cybernetics: Systems 51 (2), 905-915, 2019
1182019
Distributed controller–estimator for target tracking of networked robotic systems under sampled interaction
MF Ge, ZH Guan, B Hu, DX He, RQ Liao
Automatica 69, 410-417, 2016
1052016
Predefined-time formation tracking control of networked marine surface vehicles
CD Liang, MF Ge, ZW Liu, G Ling, F Liu
Control Engineering Practice 107, 104682, 2021
1002021
Finite-/fixed-time synchronization of memristor chaotic systems and image encryption application
L Wang, S Jiang, MF Ge, C Hu, J Hu
IEEE Transactions on Circuits and Systems I: Regular Papers 68 (12), 4957-4969, 2021
942021
Hierarchical controller-estimator for coordination of networked Euler–Lagrange systems
MF Ge, ZW Liu, G Wen, X Yu, T Huang
IEEE Transactions on Cybernetics 50 (6), 2450-2461, 2020
922020
Global stabilization analysis of inertial memristive recurrent neural networks with discrete and distributed delays
L Wang, Z Zeng, MF Ge, J Hu
Neural Networks 105, 65-74, 2018
792018
Finite-time robust consensus of nonlinear disturbed multiagent systems via two-layer event-triggered control
L Wang, MF Ge, Z Zeng, J Hu
Information Sciences 466, 270-283, 2018
742018
Time-varying formation tracking of multiple manipulators via distributed finite-time control
MF Ge, ZH Guan, C Yang, T Li, YW Wang
Neurocomputing 202, 20-26, 2016
712016
Discrete-communication-based bipartite tracking of networked robotic systems via hierarchical hybrid control
TF Ding, MF Ge, ZW Liu, YW Wang, HR Karimi
IEEE Transactions on Circuits and Systems I: Regular Papers 67 (4), 1402-1412, 2020
672020
Event-triggered consensus control for networked underactuated robotic systems
XY Yao, JH Park, HF Ding, MF Ge
IEEE Transactions on Cybernetics 52 (5), 2896-2906, 2020
562020
Finite-time stabilization of memristor-based inertial neural networks with discontinuous activations and distributed delays
L Wang, Z Zeng, X Zong, MF Ge
Journal of the Franklin Institute 356 (6), 3628-3643, 2019
542019
A novel sliding surface design for predefined-time stabilization of Euler–Lagrange systems
CD Liang, MF Ge, ZW Liu, G Ling, XW Zhao
Nonlinear Dynamics 106 (1), 445-458, 2021
532021
Output multiformation tracking of networked heterogeneous robotic systems via finite-time hierarchical control
CD Liang, MF Ge, ZW Liu, YW Wang, HR Karimi
IEEE Transactions on Cybernetics 51 (6), 2893-2904, 2020
512020
Multi-target tracking of networked heterogeneous collaborative robots in task space
CD Liang, L Wang, XY Yao, ZW Liu, MF Ge
Nonlinear Dynamics 97 (2), 1159-1173, 2019
482019
Biomass porous carbon/polyethylene glycol shape-stable phase change composites for multi-source driven thermal energy conversion and storage
K Zhou, Y Sheng, W Guo, L Wu, H Wu, X Hu, Y Xu, Y Li, M Ge, Y Du, X Lu, ...
Advanced Composites and Hybrid Materials 6 (1), 34, 2023
472023
Bipartite consensus for networked robotic systems with quantized-data interactions
TF Ding, MF Ge, CH Xiong, JH Park
Information Sciences 511, 229-242, 2020
472020
Prescribed-time formation tracking of second-order multi-agent networks with directed graphs
TF Ding, MF Ge, C Xiong, ZW Liu, G Ling
Automatica 152, 110997, 2023
432023
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