default search action
Mou Chen
Person information
Refine list
refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2024
- [j147]Ying Wu, Mou Chen, Mohammed Chadli, Hongyi Li:
Dual-type-triggers-based cooperative adaptive critic control of swarm UAVs under FDI attacks. Autom. 167: 111757 (2024) - [j146]Wen Li, Shuang Shi, Mou Chen, Qingxian Wu:
Adaptive Tracking Control for the Conversion Mode of Tilt-Rotor Aircraft with Switched Fuzzy Modeling. Int. J. Fuzzy Syst. 26(4): 1203-1214 (2024) - [j145]Wei Liu, Mou Chen, Kenan Yong:
Flexible performance constraint-based control of a quadrotor UAV-suspended payload system under input saturation. Int. J. Syst. Sci. 55(1): 130-146 (2024) - [j144]Baomin Li, Mou Chen:
Adaptive fuzzy anti-saturation tracking control for uncertain nonlinear systems with external disturbance. Int. J. Syst. Sci. 55(6): 1243-1258 (2024) - [j143]Yaohua Shen, Mou Chen, Zixuan Zheng, Peng Zhang:
Appointed-time-control-based three-dimensional parallel approaching guidance for intercepting maneuvering target. J. Frankl. Inst. 361(14): 107076 (2024) - [j142]Fan Liu, Mou Chen, Tao Li:
Fixed-time anti-disturbance control for nonlinear turbofan engine with impulsive prescribed performance. J. Frankl. Inst. 361(17): 107193 (2024) - [j141]Tongle Zhou, Mou Chen, Yuhui Wang, Ronggang Zhu, Chenguang Yang:
Cooperative attack-defense decision-making of multi-UAV using satisficing decision-enhanced wolf pack search algorithm. Soft Comput. 28(17-18): 9575-9586 (2024) - [j140]Liyan Wen, Bin Jiang, Mou Chen, Yajie Ma:
Adaptive Control of Noncanonical Nonlinear Systems With Time-Varying Dynamics. IEEE Trans. Autom. Control. 69(1): 590-597 (2024) - [j139]Chaochun Huang, Bin Du, Mou Chen:
Multi-UAV Cooperative Online Searching Based on Voronoi Diagrams. IEEE Trans. Aerosp. Electron. Syst. 60(3): 3038-3049 (2024) - [j138]Ying Wu, Mou Chen, Hongyi Li, Mohammed Chadli:
Event-Triggered Distributed Intelligent Learning Control of Six-Rotor UAVs Under FDI Attacks. IEEE Trans. Artif. Intell. 5(7): 3299-3312 (2024) - [j137]Ying Wu, Mou Chen, Hongyi Li, Mohammed Chadli:
Event-Triggered-Based Adaptive NN Cooperative Control of Six-Rotor UAVs With Finite-Time Prescribed Performance. IEEE Trans Autom. Sci. Eng. 21(2): 1867-1877 (2024) - [j136]Yaohua Shen, Mou Chen:
Event-Triggering-Learning-Based ADP Control for Post-Stall Pitching Maneuver of Aircraft. IEEE Trans. Cybern. 54(1): 423-434 (2024) - [j135]Kenan Yong, Mou Chen, Yang Shi, Qingxian Wu:
Flexible Performance-Based Control for Nonlinear Systems Under Strong External Disturbances. IEEE Trans. Cybern. 54(2): 762-775 (2024) - [j134]Shumin Lu, Mou Chen, Yan-Jun Liu, Shuyi Shao:
SDO-Based Command Filtered Adaptive Neural Tracking Control for MIMO Nonlinear Systems With Time-Varying Constraints. IEEE Trans. Cybern. 54(9): 5054-5067 (2024) - [j133]Ying Wu, Mou Chen, Hongyi Li, Mohammed Chadli:
Mixed-Zero-Sum-Game-Based Memory Event-Triggered Cooperative Control of Heterogeneous MASs Against DoS Attacks. IEEE Trans. Cybern. 54(10): 5733-5745 (2024) - [j132]Ying Wu, Mou Chen, Mohammed Chadli:
Zero-Sum-Game-Based Distributed Fuzzy Adaptive Self-Triggered Control of Swarm UAVs Under Intermittent Communication and DoS Attacks. IEEE Trans. Fuzzy Syst. 32(9): 5371-5384 (2024) - [j131]Shuyi Shao, Xiaohui Yan, Mou Chen, Zhengcai An:
Event-Triggered Robust Constrained Control of Uncertain Nonlinear Systems With Input Saturation Based on Self-Learning Disturbance Observer. IEEE Trans. Instrum. Meas. 73: 1-15 (2024) - [j130]Zengliang Han, Mou Chen, Shuyi Shao, Haojie Zhu, Qingxian Wu:
Cooperative Multi-Task Assignment of Unmanned Autonomous Helicopters Based on Hybrid Enhanced Learning ABC Algorithm. IEEE Trans. Intell. Veh. 9(1): 526-540 (2024) - [j129]Shuyi Shao, Zhengcai An, Mou Chen, Qijun Zhao:
Resilient Neural Control Based on Event-Triggered Extended State Observers and the Application in Unmanned Aerial Vehicles. IEEE Trans. Intell. Veh. 9(1): 930-943 (2024) - [j128]Zhengguo Huang, Mou Chen:
Augmented Disturbance Observer-Based Appointed-Time Tracking Control of UAVs Under Exogenous Disturbance. IEEE Trans. Intell. Veh. 9(1): 2822-2835 (2024) - [j127]Lili Wei, Mou Chen, Shuang Shi:
Dynamic Event-Triggered Consensus Cost-Based Switching Control for UAV Formation With Disturbances. IEEE Trans. Intell. Veh. 9(2): 3531-3543 (2024) - [j126]Shuyi Shao, Mou Chen, Sijia Zheng, Shumin Lu, Qijun Zhao:
Event-Triggered Fractional-Order Tracking Control for an Uncertain Nonlinear System With Output Saturation and Disturbances. IEEE Trans. Neural Networks Learn. Syst. 35(5): 5857-5869 (2024) - [c36]Biao Ma, Mou Chen:
Reachable Set Computation Algorithm Based on Optimal Theory and Disturbance Observer. ICARM 2024: 82-87 - [c35]Mihai Micu, Mihai Lungu, Mou Chen, Mohammad Reza:
Four-Stage Cascaded Control Scheme Based on Robust Nonlinear Dynamic Inversion Technique for Quadrotors. ICSTCC 2024: 235-240 - 2023
- [j125]Haoxiang Ma, Mou Chen, Qingxian Wu:
Disturbance Observer-Based Safe Tracking Control for Unmanned Helicopters with Partial State Constraints and Disturbances. IEEE CAA J. Autom. Sinica 10(11): 2056-2069 (2023) - [j124]Wei Hu, Shuyi Shao, Zhengcai An, Mou Chen:
Prescribed Performance Discrete-Time Fuzzy Carrier Landing Control of UAV Based on Disturbance Observer. Int. J. Fuzzy Syst. 25(8): 3074-3087 (2023) - [j123]Biao Ma, Mou Chen:
Safety flight envelope calculation and protection control of UAV based on disturbance observer. Secur. Saf. 2: 2023020 (2023) - [j122]Jian Sun, Youmin Zhang, Hong Chen, Mou Chen, Qinglei Hu:
Preface: Security and safety in unmanned systems. Secur. Saf. 2: 2023032 (2023) - [j121]Yankai Li, Mou Chen, Peng Shi, Tao Li:
Stochastic Anti-Disturbance Flight Control for Helicopter Systems With Switching Disturbances Under Markovian Parameters. IEEE Trans. Aerosp. Electron. Syst. 59(3): 2933-2946 (2023) - [j120]Zengliang Han, Mou Chen, Shuyi Shao, Tongle Zhou, Qingxian Wu:
Path Planning of Unmanned Autonomous Helicopter Based on Hybrid Satisficing Decision-Enhanced Swarm Intelligence Algorithm. IEEE Trans. Cogn. Dev. Syst. 15(3): 1371-1385 (2023) - [j119]Zhengguo Huang, Mou Chen, Peng Shi:
Disturbance Utilization-Based Tracking Control for the Fixed-Wing UAV With Disturbance Estimation. IEEE Trans. Circuits Syst. I Regul. Pap. 70(3): 1337-1349 (2023) - [j118]Zhengguo Huang, Mou Chen, Mihai Lungu:
Interconnected Disturbance Observer-Based Tracking Control for Permanent Magnet Synchronous Motors. IEEE Trans. Control. Syst. Technol. 31(6): 2953-2960 (2023) - [j117]Xiuyu He, Yonghao Ma, Mou Chen, Wei He:
Flight and Vibration Control of Flexible Air-Breathing Hypersonic Vehicles Under Actuator Faults. IEEE Trans. Cybern. 53(5): 2741-2752 (2023) - [j116]Haoxiang Ma, Mou Chen, Gang Feng, Qingxian Wu:
Disturbance-Observer-Based Adaptive Fuzzy Tracking Control for Unmanned Autonomous Helicopter With Flight Boundary Constraints. IEEE Trans. Fuzzy Syst. 31(1): 184-198 (2023) - [j115]Hongzhen Guo, Mou Chen, Yuhan Jiang, Mihai Lungu:
Distributed Adaptive Human-in-the-Loop Event-Triggered Formation Control for QUAVs With Quantized Communication. IEEE Trans. Ind. Informatics 19(6): 7572-7582 (2023) - [j114]Wen Li, Shuang Shi, Mou Chen, Shuyi Shao, Qingxian Wu:
Switching modeling and bumpless transfer tracking control for the conversion mode of tilt-rotor aircraft. Trans. Inst. Meas. Control 45(11): 2103-2114 (2023) - [j113]Peng Wang, Kenan Yong, Mou Chen, Xiaobing Zhang:
Output-Feedback Flexible Performance-Based Safe Formation for Underactuated Unmanned Surface Vehicles. IEEE Trans. Intell. Veh. 8(3): 2437-2447 (2023) - [j112]Hongyi Li, Ying Wu, Mou Chen, Renquan Lu:
Adaptive Multigradient Recursive Reinforcement Learning Event-Triggered Tracking Control for Multiagent Systems. IEEE Trans. Neural Networks Learn. Syst. 34(1): 144-156 (2023) - [j111]Shumin Lu, Mou Chen, Yan-Jun Liu, Shuyi Shao:
Adaptive NN Tracking Control for Uncertain MIMO Nonlinear System With Time-Varying State Constraints and Disturbances. IEEE Trans. Neural Networks Learn. Syst. 34(10): 7309-7323 (2023) - [c34]Romulus Lungu, Florentin Alin Butu, Mihai Lungu, Mou Chen:
Automatic Control of Launch Vehicles' Flight Path Slope Angle by Means of the Backstepping Control Method. CoDIT 2023: 1-6 - [c33]Romulus Lungu, Florentin Alin Butu, Mihai Lungu, Mou Chen:
Adaptive Control of the Relative Position for Space Vehicles in the Rendezvous Missions. ICSTCC 2023: 50-55 - [c32]Zhengguo Huang, Jin Zhao, Mou Chen, Yongdong Dai, Ze Zhang, Maofei Wang:
Tracking Control for The UAV With Disturbance Observer and RBFNN under Actuator Fault. ISCSIC 2023: 103-107 - 2022
- [j110]Fan Liu, Mou Chen, Tao Li:
Resilient H∞ control for uncertain turbofan linear switched systems with hybrid switching mechanism and disturbance observer. Appl. Math. Comput. 413: 126597 (2022) - [j109]Lijun Liu, Mou Chen, Tao Li:
Disturbance observer-based robust coordination control for unmanned autonomous helicopter slung-load system via coupling analysis method. Appl. Math. Comput. 427: 127148 (2022) - [j108]Lili Wei, Mou Chen:
Distributed DETMs-based internal collision avoidance control for UAV formation with lumped disturbances. Appl. Math. Comput. 433: 127362 (2022) - [j107]Kenan Yong, Mou Chen, Qingxian Wu:
Noncertainty-equivalent observer-based noncooperative target tracking control for unmanned aerial vehicles. Sci. China Inf. Sci. 65(5): 1-15 (2022) - [j106]Min Wan, Mou Chen, Kenan Yong:
Adaptive tracking control for an unmanned autonomous helicopter using neural network and disturbance observer. Neurocomputing 468: 296-305 (2022) - [j105]Shouyi Li, Mou Chen, Yuhui Wang, Qingxian Wu:
A fast algorithm to solve large-scale matrix games based on dimensionality reduction and its application in multiple unmanned combat air vehicles attack-defense decision-making. Inf. Sci. 594: 305-321 (2022) - [j104]Wei Liu, Mou Chen, Peng Shi:
Fixed-Time Disturbance Observer-Based Control for Quadcopter Suspension Transportation System. IEEE Trans. Circuits Syst. I Regul. Pap. 69(11): 4632-4642 (2022) - [j103]Zhengguo Huang, Mou Chen:
Coordinated Disturbance Observer-Based Flight Control of Fixed-Wing UAV. IEEE Trans. Circuits Syst. II Express Briefs 69(8): 3545-3549 (2022) - [j102]Yonghao Ma, Xiuyu He, Mou Chen, Wei He:
Predictor-Based Control for a Flexible Satellite Subject to Output Time Delay. IEEE Trans. Control. Syst. Technol. 30(4): 1420-1432 (2022) - [j101]Mou Chen, Haoxiang Ma, Yu Kang, Qingxian Wu:
Adaptive Neural Safe Tracking Control Design for a Class of Uncertain Nonlinear Systems With Output Constraints and Disturbances. IEEE Trans. Cybern. 52(11): 12571-12582 (2022) - [j100]Ying Wu, Hui Ma, Mou Chen, Hongyi Li:
Observer-Based Fixed-Time Adaptive Fuzzy Bipartite Containment Control for Multiagent Systems With Unknown Hysteresis. IEEE Trans. Fuzzy Syst. 30(5): 1302-1312 (2022) - [j99]Xiuhui Peng, Zhiyong Sun, Mou Chen, Zhiyong Geng:
Arbitrary Configuration Stabilization Control for Nonholonomic Vehicle With Input Saturation: A c-Nonholonomic Trajectory Approach. IEEE Trans. Ind. Electron. 69(2): 1663-1672 (2022) - [j98]Bing Zhu, Mou Chen, Tao Li:
Prescribed performance-based tracking control for quadrotor UAV under input delays and input saturations. Trans. Inst. Meas. Control 44(10): 2049-2062 (2022) - [j97]Mou Chen, Kun Yan, Qingxian Wu:
Multiapproximator-Based Fault-Tolerant Tracking Control for Unmanned Autonomous Helicopter With Input Saturation. IEEE Trans. Syst. Man Cybern. Syst. 52(9): 5710-5722 (2022) - [c31]Ying Wu, Mou Chen, Wei Hu:
Event-Triggered Optimal Cooperative NN Control for UAV Systems with Deception Attacks. ICARM 2022: 213-218 - 2021
- [b1]Shuyi Shao, Mou Chen, Peng Shi:
Robust Discrete-Time Flight Control of UAV with External Disturbances. Springer 2021, ISBN 978-3-030-57956-2, pp. 1-207 - [j96]Shixun Xiong, Qingxian Wu, Yuhui Wang, Mou Chen:
An l2-l∞ distributed containment coordination tracking of heterogeneous multi-unmanned systems with switching directed topology. Appl. Math. Comput. 404: 126080 (2021) - [j95]Xiaofeng Xu, Mou Chen, Tao Li, Qingxian Wu:
Composite fault tolerant attitude control for flexible satellite system under disturbance and input delay. Appl. Math. Comput. 409: 126419 (2021) - [j94]Bei Wu, Mou Chen, Shuyi Shao, Luo Zhang:
Disturbance-observer-based adaptive NN control for a class of MIMO discrete-time nonlinear strict-feedback systems with dead zone. Neurocomputing 446: 23-31 (2021) - [j93]Lili Wei, Mou Chen, Tao Li:
Disturbance-observer-based formation-containment control for UAVs via distributed adaptive event -triggered mechanisms. J. Frankl. Inst. 358(10): 5305-5333 (2021) - [j92]Lijun Liu, Mou Chen, Tao Li, Huijiao Wang:
Composite Anti-Disturbance Reference Model L2-L∞ Control for Helicopter Slung Load System. J. Intell. Robotic Syst. 102(1): 15 (2021) - [j91]Kenan Yong, Mou Chen, Yang Shi, Qingxian Wu:
Hybrid Estimation Strategy-Based Anti-disturbance Control for Nonlinear Systems. IEEE Trans. Autom. Control. 66(10): 4910-4917 (2021) - [j90]Hongyi Li, Ying Wu, Mou Chen:
Adaptive Fault-Tolerant Tracking Control for Discrete-Time Multiagent Systems via Reinforcement Learning Algorithm. IEEE Trans. Cybern. 51(3): 1163-1174 (2021) - [j89]Ke Zhang, Bin Jiang, Mou Chen, Xing-Gang Yan:
Distributed Fault Estimation and Fault-Tolerant Control of Interconnected Systems. IEEE Trans. Cybern. 51(3): 1230-1240 (2021) - [j88]Ying Wu, Yingnan Pan, Mou Chen, Hongyi Li:
Quantized Adaptive Finite-Time Bipartite NN Tracking Control for Stochastic Multiagent Systems. IEEE Trans. Cybern. 51(6): 2870-2881 (2021) - [j87]Yanjun Zhang, Gang Tao, Mou Chen, Wen Chen, Zhengqiang Zhang:
An Implicit Function-Based Adaptive Control Scheme for Noncanonical-Form Discrete-Time Neural-Network Systems. IEEE Trans. Cybern. 51(12): 5728-5739 (2021) - [j86]Xiaohui Yan, Mou Chen, Gang Feng, Qingxian Wu, Shuyi Shao:
Fuzzy Robust Constrained Control for Nonlinear Systems With Input Saturation and External Disturbances. IEEE Trans. Fuzzy Syst. 29(2): 345-356 (2021) - [j85]Heli Gao, Mou Chen:
Fixed-time tracking control for two-link rigid manipulator based on disturbance observer. Trans. Inst. Meas. Control 43(9) (2021) - [j84]Shuyi Shao, Mou Chen:
Adaptive Neural Discrete-Time Fractional-Order Control for a UAV System With Prescribed Performance Using Disturbance Observer. IEEE Trans. Syst. Man Cybern. Syst. 51(2): 742-754 (2021) - [j83]Mou Chen, Shixun Xiong, Qingxian Wu:
Tracking Flight Control of Quadrotor Based on Disturbance Observer. IEEE Trans. Syst. Man Cybern. Syst. 51(3): 1414-1423 (2021) - [j82]Yankai Li, Mou Chen, Tao Li, Huijiao Wang:
Robust Resilient Control Based on Multi-Approximator for the Uncertain Turbofan System With Unmeasured States and Disturbances. IEEE Trans. Syst. Man Cybern. Syst. 51(10): 6040-6049 (2021) - [c30]Kenan Yong, Mou Chen, Qingxian Wu:
Finite-Time Performance Recovery Strategy-based NCE Adaptive Neural Control for Networked Nonlinear Systems against DoS Attack. ICPS 2021: 403-410 - 2020
- [j81]Nigar Ahmed, Mou Chen, Shuyi Shao:
Disturbance Observer Based Tracking Control of Quadrotor With High-Order Disturbances. IEEE Access 8: 8300-8313 (2020) - [j80]Dawei Wu, Mou Chen, Hui Ye:
Analysis and Recovery of Aircraft Deep-Stall Phenomena Using Bifurcation Analysis. IEEE Access 8: 29319-29333 (2020) - [j79]Yankai Li, Mou Chen, Tao Li, Peng Shi:
Anti-disturbance reference mode resilient dynamic output feedback control for turbofan systems. Appl. Math. Comput. 378: 125183 (2020) - [j78]Kenan Yong, Mou Chen, Yang Shi, Qingxian Wu:
Flexible performance-based robust control for a class of nonlinear systems with input saturation. Autom. 122: 109268 (2020) - [j77]Yong Ren, Mou Chen, Jianye Liu:
Bilateral coordinate boundary adaptive control for a helicopter lifting system with backlash-like hysteresis. Sci. China Inf. Sci. 63(1): 119203 (2020) - [j76]Shuyi Shao, Mou Chen:
Sliding-mode-disturbance-observer-based adaptive neural control of uncertain discrete-time systems. Sci. China Inf. Sci. 63(4) (2020) - [j75]Tongle Zhou, Mou Chen, Chenguang Yang, Zhiqiang Nie:
Data fusion using Bayesian theory and reinforcement learning method. Sci. China Inf. Sci. 63(7) (2020) - [j74]Tongle Zhou, Mou Chen, Yuhui Wang, Jianliang He, Chenguang Yang:
Information Entropy-Based Intention Prediction of Aerial Targets under Uncertain and Incomplete Information. Entropy 22(3): 279 (2020) - [j73]Xiaoming Chen, Liqun Wang, Mou Chen, Jun Shen:
ℓ∞-induced output-feedback controller synthesis for positive nonlinear systems via T-S fuzzy model approach. Fuzzy Sets Syst. 385: 98-110 (2020) - [j72]Tongle Zhou, Mou Chen, Jie Zou:
Reinforcement learning based data fusion method for multi-sensors. IEEE CAA J. Autom. Sinica 7(6): 1489-1497 (2020) - [j71]Rongsheng Xia, Mou Chen, Qingxian Wu, Yuhui Wang:
Neural network based integral sliding mode optimal flight control of near space hypersonic vehicle. Neurocomputing 379: 41-52 (2020) - [j70]Kun Yan, Mou Chen, Qingxian Wu, Yuhui Wang, Ronggang Zhu:
Prescribed performance fault tolerant control for uncertain nonlinear systems with input saturation. Int. J. Syst. Sci. 51(2): 258-274 (2020) - [j69]Yanjun Zhang, Gang Tao, Mou Chen, Wei Lin, Zhengqiang Zhang:
Relative Degrees and Implicit Function-Based Control of Discrete-Time Noncanonical Form Neural Network Systems. IEEE Trans. Cybern. 50(2): 514-524 (2020) - [j68]Kenan Yong, Mou Chen, Qingxian Wu:
Anti-Disturbance Control for Nonlinear Systems Based on Interval Observer. IEEE Trans. Ind. Electron. 67(2): 1261-1269 (2020) - [j67]Yankai Li, Mou Chen, Tao Li, Huijiao Wang, Yu Kang:
Resilient anti-disturbance H∞ control for turbofan systems. Trans. Inst. Meas. Control 42(14): 2686-2697 (2020) - [j66]Zehui Mao, Xing-Gang Yan, Bin Jiang, Mou Chen:
Adaptive Fault-Tolerant Sliding-Mode Control for High-Speed Trains With Actuator Faults and Uncertainties. IEEE Trans. Intell. Transp. Syst. 21(6): 2449-2460 (2020) - [c29]Shuyi Shao, Mou Chen, Xiaohui Yan, Qijun Zhao:
Sliding Mode Control of Uncertain Discrete-Time Nonlinear Systems Based on Disturbance Observer. ICARM 2020: 294-299 - [c28]Fan Liu, Mou Chen:
Robust Adaptive Fault-Tolerant Control for the Turbofan Aero-Engine System. ICARM 2020: 489-494 - [c27]Kenan Yong, Qingxian Wu, Mou Chen, Rong Mei:
Attitude-Constrained Flight Control for Unmanned Aerial Vehicles with Thrust-Vectoring Maneuverability Enhancement. ICCA 2020: 76-81
2010 – 2019
- 2019
- [j65]Shixun Xiong, Mou Chen, Qianxian Wu:
Predictive control for networked switch flight system with packet dropout. Appl. Math. Comput. 354: 444-459 (2019) - [j64]Yanjun Zhang, Gang Tao, Mou Chen, Liyan Wen, Zhengqiang Zhang:
A matrix decomposition based adaptive control scheme for a class of MIMO non-canonical approximation systems. Autom. 103: 490-502 (2019) - [j63]Rongsheng Xia, Qingxian Wu, Mou Chen:
Disturbance observer-based optimal longitudinal trajectory control of near space vehicle. Sci. China Inf. Sci. 62(5): 50212:1-50212:3 (2019) - [j62]Bei Wu, Mou Chen, Luo Zhang:
Disturbance-observer-based sliding mode control for T-S fuzzy discrete-time systems with application to circuit system. Fuzzy Sets Syst. 374: 138-151 (2019) - [j61]Shuyi Shao, Mou Chen:
Fractional-order control for a novel chaotic system without equilibrium. IEEE CAA J. Autom. Sinica 6(4): 1000-1009 (2019) - [j60]Yong Ren, Mou Chen:
Anti-swing control for a suspension cable system of a helicopter with cable swing constraint and unknown dead-zone. Neurocomputing 356: 257-267 (2019) - [j59]Kenan Yong, Mou Chen, Qingxian Wu:
Immersion and invariance-based integrated guidance and control for unmanned aerial vehicle path following. Int. J. Syst. Sci. 50(5): 1052-1068 (2019) - [j58]Rongxin Cui, Lepeng Chen, Chenguang Yang, Mou Chen:
Corrections to "Extended State Observer-Based Integral Sliding Mode Control for an Underwater Robot With Unknown Disturbances and Uncertain Nonlinearities". IEEE Trans. Ind. Electron. 66(10): 8279-8280 (2019) - [j57]Yong Ren, Mou Chen, Qingxian Wu:
Disturbance observer-based boundary control for a suspension cable system moving in the horizontal plane. Trans. Inst. Meas. Control 41(2): 340-349 (2019) - [j56]Kun Yan, Mou Chen, Qiangxian Wu, Ke Lu:
Robust attitude fault-tolerant control for unmanned autonomous helicopter with flapping dynamics and actuator faults. Trans. Inst. Meas. Control 41(5): 1266-1277 (2019) - [j55]Shuyi Shao, Mou Chen, Youmin Zhang:
Adaptive Discrete-Time Flight Control Using Disturbance Observer and Neural Networks. IEEE Trans. Neural Networks Learn. Syst. 30(12): 3708-3721 (2019) - [c26]Wenchao Zheng, Mou Chen, Ronggang Zhu, Rong Mei:
Tracking Control of Two DOF Manipulator Based on LADRC. ICARM 2019: 220-225 - [c25]Tongle Zhou, Mou Chen, Jie Zou:
Data Fusion of Air Combat Based on Reinforcement Learning. ICARM 2019: 492-497 - [c24]Kenan Yong, Qingxian Wu, Mou Chen:
Wind Estimation-based Robust Flight Control for UAV with Active Maneuverability Limit. ISIE 2019: 682-687 - 2018
- [j54]Wenchao Zheng, Mou Chen:
Tracking Control of Manipulator Based on High-Order Disturbance Observer. IEEE Access 6: 26753-26764 (2018) - [j53]Min Wan, Mou Chen, Kun Yan:
Adaptive Sliding Mode Tracking Control for Unmanned Autonomous Helicopters Based on Neural Networks. Complex. 2018: 7379680:1-7379680:11 (2018) - [j52]Kenan Yong, Mou Chen, Qing-Xian Wu:
Constrained adaptive neural control for a class of nonstrict-feedback nonlinear systems with disturbances. Neurocomputing 272: 405-415 (2018) - [j51]Dawei Wu, Mou Chen, Huajun Gong:
Adaptive neural flight control for an aircraft with time-varying distributed delays. Neurocomputing 307: 130-145 (2018) - [j50]Yankai Li, Mou Chen, Liang Cai, Qing-Xian Wu:
Resilient control based on disturbance observer for nonlinear singular stochastic hybrid system with partly unknown Markovian jump parameters. J. Frankl. Inst. 355(5): 2243-2265 (2018) - [j49]Shuyi Shao, Mou Chen, Xiaohui Yan:
Prescribed performance synchronization for uncertain chaotic systems with input saturation based on neural networks. Neural Comput. Appl. 29(12): 1349-1361 (2018) - [j48]Junkang Ni, Ling Liu, Mou Chen, Chongxin Liu:
Fixed-Time Disturbance Observer Design for Brunovsky Systems. IEEE Trans. Circuits Syst. II Express Briefs 65-II(3): 341-345 (2018) - [j47]Muhammad Ejaz, Mou Chen:
Optimal backstepping control for a ship using firefly optimization algorithm and disturbance observer. Trans. Inst. Meas. Control 40(6): 1983-1998 (2018) - [j46]Mou Chen, Yong Ren, Jianye Liu:
Antidisturbance Control for a Suspension Cable System of Helicopter Subject to Input Nonlinearities. IEEE Trans. Syst. Man Cybern. Syst. 48(12): 2292-2304 (2018) - [c23]Xiaohui Yan, Mou Chen, Qingxian Wu:
Robust Stochastic Longitudinal Control for Near Space Vehicles via Polynomial Approximation. ICARM 2018: 588-593 - 2017
- [j45]Mou Chen:
Robust tracking control for self-balancing mobile robots using disturbance observer. IEEE CAA J. Autom. Sinica 4(3): 458-465 (2017) - [j44]Runxian Yang, Chenguang Yang, Mou Chen, Andy S. K. Annamalai:
Discrete-time optimal adaptive RBFNN control for robot manipulators with uncertain dynamics. Neurocomputing 234: 107-115 (2017) - [j43]Rong Li, Mou Chen, Qing-Xian Wu:
Adaptive neural tracking control for uncertain nonlinear systems with input and output constraints using disturbance observer. Neurocomputing 235: 27-37 (2017) - [j42]Xiaoming Chen, Mou Chen, Jun Shen, Shuyi Shao:
ℓ1-induced state-bounding observer design for positive Takagi-Sugeno fuzzy systems. Neurocomputing 260: 490-496 (2017) - [j41]Shuyi Shao, Mou Chen, Qing-Xian Wu:
Tracking control for uncertain fractional-order chaotic systems based on disturbance observer and neural network. IMA J. Math. Control. Inf. 34(3): 1011-1030 (2017) - [j40]Xiaoming Chen, Mou Chen, Jun Shen:
A novel approach to L1-induced controller synthesis for positive systems with interval uncertainties. J. Frankl. Inst. 354(8): 3364-3377 (2017) - [j39]Mou Chen, Shuyi Shao, Peng Shi, Yan Shi:
Disturbance-Observer-Based Robust Synchronization Control for a Class of Fractional-Order Chaotic Systems. IEEE Trans. Circuits Syst. II Express Briefs 64-II(4): 417-421 (2017) - [j38]Mou Chen, Shuyi Shao, Bin Jiang:
Adaptive Neural Control of Uncertain Nonlinear Systems Using Disturbance Observer. IEEE Trans. Cybern. 47(10): 3110-3123 (2017) - [j37]Yanjun Zhang, Gang Tao, Mou Chen, Liyan Wen:
Parameterization and Adaptive Control of Multivariable Noncanonical T-S Fuzzy Systems. IEEE Trans. Fuzzy Syst. 25(1): 156-171 (2017) - [j36]Mou Chen:
Disturbance Attenuation Tracking Control for Wheeled Mobile Robots With Skidding and Slipping. IEEE Trans. Ind. Electron. 64(4): 3359-3368 (2017) - [j35]Rongxin Cui, Lepeng Chen, Chenguang Yang, Mou Chen:
Extended State Observer-Based Integral Sliding Mode Control for an Underwater Robot With Unknown Disturbances and Uncertain Nonlinearities. IEEE Trans. Ind. Electron. 64(8): 6785-6795 (2017) - [c22]Yanjun Zhang, Gang Tao, Mou Chen, Wei Lin:
An implicit function based control scheme for discrete-time non-canonical form neural network systems. ASCC 2017: 1211-1216 - [c21]Mou Chen, Yankai Li, Qingxian Wu:
Reference mode control for a helicopter with time-varying disturbance. ICARM 2017: 692-697 - [c20]Kun Yan, Qing-Xian Wu, Mou Chen:
Robust adaptive backstepping control for unmanned autonomous helicopter with flapping dynamics. ICCA 2017: 1027-1032 - [c19]Jinghua Li, Yibin Huang, Zhao Xu, Jing Wang, Mou Chen:
Path planning of UAV based on hierarchical genetic algorithm with optimized search region. ICCA 2017: 1033-1038 - 2016
- [j34]Shuyi Shao, Mou Chen, Qing-Xian Wu:
Stabilization Control of Continuous-Time Fractional Positive Systems Based on Disturbance Observer. IEEE Access 4: 3054-3064 (2016) - [j33]Luo Zhang, Mou Chen, Qing-Xian Wu, Bei Wu:
Fault Tolerant Control for Uncertain Networked Control Systems With Induced Delays and Actuator Saturation. IEEE Access 4: 6574-6584 (2016) - [j32]Xiaoming Chen, Mou Chen, Wenhai Qi, Jun Shen:
Dynamic output-feedback control for continuous-time interval positive systems under L1 performance. Appl. Math. Comput. 289: 48-59 (2016) - [j31]Qingyun Yang, Mou Chen:
Adaptive neural prescribed performance tracking control for near space vehicles with input nonlinearity. Neurocomputing 174: 780-789 (2016) - [j30]Mou Chen, Bin Jiang, William W. Guo:
Fault-tolerant control for a class of non-linear systems with dead-zone. Int. J. Syst. Sci. 47(7): 1689-1699 (2016) - [j29]Shengfeng Zhou, Mou Chen, Chong Jin Ong, Peter C. Y. Chen:
Adaptive neural network control of uncertain MIMO nonlinear systems with input saturation. Neural Comput. Appl. 27(5): 1317-1325 (2016) - [j28]Mou Chen, Gang Tao:
Adaptive Fault-Tolerant Control of Uncertain Nonlinear Large-Scale Systems With Unknown Dead Zone. IEEE Trans. Cybern. 46(8): 1851-1862 (2016) - [j27]Yanjun Zhang, Gang Tao, Mou Chen:
Adaptive Neural Network Based Control of Noncanonical Nonlinear Systems. IEEE Trans. Neural Networks Learn. Syst. 27(9): 1864-1877 (2016) - [j26]Mou Chen, Peng Shi, Cheng-Chew Lim:
Adaptive Neural Fault-Tolerant Control of a 3-DOF Model Helicopter System. IEEE Trans. Syst. Man Cybern. Syst. 46(2): 260-270 (2016) - [j25]Mou Chen:
Constrained Control Allocation for Overactuated Aircraft Using a Neurodynamic Model. IEEE Trans. Syst. Man Cybern. Syst. 46(12): 1630-1641 (2016) - [c18]Yanjun Zhang, Gang Tao, Mou Chen, Zehui Mao:
Normal form and adaptive control of mimo non-canonical neural network systems. ACC 2016: 3056-3061 - [c17]Yanjun Zhang, Gang Tao, Mou Chen:
An adaptive control scheme for non-canonical discrete-time neural network systems. CDC 2016: 3389-3394 - [c16]Dawei Wu, Huajun Gong, Mou Chen:
Attitude tracking control of aircraft subjected to unsteady aerodynamic disturbance. ICARM 2016: 449-454 - [c15]Lei Zhang, Mou Chen, Xiaoran Li:
Multi-robot formation control with saturation constraints. ICARM 2016: 490-495 - [c14]Kenan Yong, Qing-Xian Wu, Mou Chen:
Deep-stall envelope computing considering unsteady aerodynamic based on reachability analysis. ICCA 2016: 1026-1031 - [c13]Shuyi Shao, Mou Chen, Qingyun Yang:
Sliding mode control for a class of fractional-order nonlinear systems based on disturbance observer. ICIT 2016: 1790-1795 - [c12]Runxian Yang, Chenguang Yang, Mou Chen, Jing Na:
Robust control for robot manipulators with time-varying uncertainty based on bounded observer in discrete time. ICAC 2016: 383-388 - [c11]Linyan Han, Mou Chen, Qingxian Wu, Xiaoran Li:
Sliding mode control using disturbance observer for a flexible link robot. VSS 2016: 448-453 - 2015
- [j24]Mou Chen, Beibei Ren, Qin-Xian Wu, Chang-Sheng Jiang:
Anti-disturbance control of hypersonic flight vehicles with input saturation using disturbance observer. Sci. China Inf. Sci. 58(7): 1-12 (2015) - [j23]Jing Yu, Mou Chen:
Fault Tolerant Control for Near Space Vehicles with Input Saturation Using Disturbance Observer and Neural Networks. Circuits Syst. Signal Process. 34(7): 2091-2107 (2015) - [j22]Mou Chen, Peng Shi, Cheng-Chew Lim:
Robust Constrained Control for MIMO Nonlinear Systems Based on Disturbance Observer. IEEE Trans. Autom. Control. 60(12): 3281-3286 (2015) - [j21]Yanjun Zhang, Gang Tao, Mou Chen:
Relative Degrees and Adaptive Feedback Linearization Control of T-S Fuzzy Systems. IEEE Trans. Fuzzy Syst. 23(6): 2215-2230 (2015) - [j20]Mou Chen, Shuzhi Sam Ge:
Adaptive Neural Output Feedback Control of Uncertain Nonlinear Systems With Unknown Hysteresis Using Disturbance Observer. IEEE Trans. Ind. Electron. 62(12): 7706-7716 (2015) - [j19]Mou Chen, Gang Tao, Bin Jiang:
Dynamic Surface Control Using Neural Networks for a Class of Uncertain Nonlinear Systems With Input Saturation. IEEE Trans. Neural Networks Learn. Syst. 26(9): 2086-2097 (2015) - [c10]Yanjun Zhang, Gang Tao, Mou Chen:
An adaptive output tracking control scheme for T-S fuzzy systems. ACC 2015: 5563-5568 - [c9]Yanjun Zhang, Gang Tao, Mou Chen:
Multivariable adaptive output tracking control of T-S fuzzy systems. CDC 2015: 6288-6293 - 2014
- [j18]Mou Chen, Wen-Hua Chen, Qing-Xian Wu:
Adaptive fuzzy tracking control for a class of uncertain MIMO nonlinear systems using disturbance observer. Sci. China Inf. Sci. 57(1): 1-13 (2014) - [j17]Mou Chen, Qing-Xian Wu, Chang-Sheng Jiang, Bin Jiang:
Guaranteed transient performance based control with input saturation for near space vehicles. Sci. China Inf. Sci. 57(5): 1-12 (2014) - [j16]Mou Chen, Yanlong Zhou, William W. Guo:
Robust tracking control for uncertain MIMO nonlinear systems with input saturation using RWNNDO. Neurocomputing 144: 436-447 (2014) - [j15]Mou Chen, Bin Jiang, Rongxin Cui:
Robust Control for Rigid robotic manipulators using nonlinear disturbance observer. Int. J. Robotics Autom. 29(3) (2014) - [j14]Qingyun Yang, Mou Chen:
Robust Control for Uncertain Linear System Subject to Input Saturation. J. Appl. Math. 2014: 803842:1-803842:12 (2014) - [c8]Mou Chen, Rong Mei:
Actuator fault tolerant control for a class of nonlinear systems using neural networks. ICCA 2014: 101-106 - [c7]Rong Li, Mou Chen, Qing-Xian Wu:
Nonlinear model predictive control for WMR with input constraint. MFI 2014: 1-6 - 2013
- [j13]Mou Chen, Bin Jiang:
Adaptive control and constrained control allocation for overactuated ocean surface vessels. Int. J. Syst. Sci. 44(12): 2295-2309 (2013) - [j12]Mou Chen, Bin Jiang, Qing-Xian Wu, Chang-Sheng Jiang:
Robust control of near-space vehicles with input backlash-like hysteresis. J. Syst. Control. Eng. 227(8): 635-644 (2013) - [j11]Hao Yang, Bin Jiang, Vincent Cocquempot, Mou Chen:
Spacecraft formation stabilization and fault tolerance: A state-varying switched system approach. Syst. Control. Lett. 62(9): 715-722 (2013) - [j10]Mou Chen, Shuzhi Sam Ge, Bernard Voon Ee How, Yoo Sang Choo:
Robust Adaptive Position Mooring Control for Marine Vessels. IEEE Trans. Control. Syst. Technol. 21(2): 395-409 (2013) - [j9]Mou Chen, Shuzhi Sam Ge:
Direct Adaptive Neural Control for a Class of Uncertain Nonaffine Nonlinear Systems Based on Disturbance Observer. IEEE Trans. Cybern. 43(4): 1213-1225 (2013) - [c6]Rongxin Cui, Dong Cui, Mou Chen:
Cooperative Tracking of Multiple Agents with Uncertain Nonlinear Dynamics and Fixed Time Delays. ISNN (2) 2013: 120-129 - [c5]Mou Chen, Qing-Xian Wu:
Adaptive Neural Control for Uncertain Attitude Dynamics of Near-Space Vehicles with Oblique Wing. ISNN (2) 2013: 196-203 - 2011
- [j8]Mou Chen, Shuzhi Sam Ge, Beibei Ren:
Adaptive tracking control of uncertain MIMO nonlinear systems with input constraints. Autom. 47(3): 452-465 (2011) - 2010
- [j7]Mou Chen, Bin Jiang, Jie Zou, Xing Feng:
Robust Adaptive Tracking Control of the Underwater Robot with Input Nonlinearity Using Neural Networks. Int. J. Comput. Intell. Syst. 3(5): 646-655 (2010) - [j6]Mou Chen, Bin Jiang, Chang-Sheng Jiang, Qing-Xian Wu:
Robust control for a class of time-delay uncertain nonlinear systems based on sliding mode observer. Neural Comput. Appl. 19(7): 945-951 (2010) - [j5]Mou Chen, Shuzhi Sam Ge, Bernard Voon Ee How:
Robust adaptive neural network control for a class of uncertain MIMO nonlinear systems with input nonlinearities. IEEE Trans. Neural Networks 21(5): 796-812 (2010) - [c4]Lu Cheng, Chang-Sheng Jiang, Mou Chen:
SMDO-based NGPC control for uncertain nonlinear systems. ALCOSP 2010: 99-104
2000 – 2009
- 2009
- [c3]Xin Yang, Lijuan Chen, Mou Chen, Dake Zhou:
Design and Reduction of UML-PN Models of Power Plant's Fault Management System. FSKD (2) 2009: 224-227 - [c2]Xin Yang, Lijuan Chen, Mou Chen, Dake Zhou:
Classification and Recognition of Character Using WP Decomposition, Zernike Moments and Fuzzy Integral. FSKD (3) 2009: 397-401 - 2008
- [j4]Mou Chen, Qing-Xian Wu, Chang-Sheng Jiang:
A modified ant optimization algorithm for path planning of UCAV. Appl. Soft Comput. 8(4): 1712-1718 (2008) - [j3]Mou Chen, Chang-Sheng Jiang, Qing-Xian Wu, Wen-Hua Chen:
Design of H∞ synchronization controller for uncertain chaotic systems with neural network. Int. J. Autom. Control. 2(1): 126-136 (2008) - [j2]Mou Chen, Chang-Sheng Jiang, Qing-Xian Wu:
Sensor fault diagnosis for a class of time delay uncertain nonlinear systems using neural network. Int. J. Autom. Comput. 5(4): 401-405 (2008) - 2007
- [j1]Mou Chen, Chang-Sheng Jiang, Qing-Xian Wu, Wen-Hua Chen:
Maintaining Synchronization by Decentralized Feedback Control in Time Delay Neural Networks with Parameter Uncertainties. Int. J. Neural Syst. 17(2): 115-122 (2007) - [c1]Mou Chen, Chang-Sheng Jiang, Qing-Xian Wu, Wen-Hua Chen:
Backstepping Control of Uncertain Time Delay Systems Based on Neural Network. ISNN (1) 2007: 112-121
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 2024-12-26 01:51 CET by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint