Adaptive Fuzzy Output-Constrained Control of Uncertain MISO Nonlinear Systems With Actuator Faults

被引:1
作者
Ruan, Zhengwei [1 ]
Yang, Qinmin [1 ]
机构
[1] Zhejiang Univ, Coll Control Sci & Engn, State Key Lab Ind Control Technol, Hangzhou 310027, Peoples R China
基金
中国国家自然科学基金;
关键词
Fault-tolerant control; Output constraints; Error transformation; Actuator faults; Uncertain MISO nonlinear systems; TOLERANT CONTROL; PERFORMANCE; SUBJECT; SCHEME;
D O I
10.1016/j.ifacol.2020.12.879
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
This paper presents a novel adaptive fuzzy fault-tolerant controller for a class of uncertain multi-input single-output (MISO) nonlinear systems subject to actuator faults with user-defined time-varying asymmetric output constraints. The highlight of the proposed method is that it can tolerate the partial and total loss of effectiveness faults without the need for additional fault detection and isolation mechanism, as well as remain the system output within the predesigned time-varying output constraints during the system operation. To achieve the new results, an error transformation strategy is implemented to convert the original constrained system to an unconstrained one. For the transformed system, an effective switching function scheme is developed to search for the desired working mode by observing a switching performance index in which the impact of faulty actuators on the system can be weakened automatically. Furthermore, it is proved that the proposed adaptive fuzzy actuator fault compensation scheme can guarantee that the output is confined within the preselected bounds and all the closed-loop signals are bounded. Finally, numerical analysis confirms the merits of the proposed controller. Copyright (C) 2020 The Authors.
引用
收藏
页码:13739 / 13744
页数:6
相关论文
共 50 条
[21]   Adaptive Cooperative Output Tracking Control for Input and Output Constrained Multiagent Systems with Actuator Faults [J].
Jin, Xu ;
Kwong, Raymond H. S. .
2016 AMERICAN CONTROL CONFERENCE (ACC), 2016, :745-750
[22]   Command Filter Based Adaptive Fuzzy Control of Uncertain Deferred Constrained Nonlinear Systems With Actuator Fault and Dead Zone [J].
You, Guodong ;
Zhang, Hailong .
INTERNATIONAL JOURNAL OF ADAPTIVE CONTROL AND SIGNAL PROCESSING, 2025, 39 (05) :1100-1113
[23]   Adaptive Quantized Consensus Control for Uncertain Nonlinear Multiagent Systems with Actuator Faults [J].
Xu, Haorui ;
Cao, Liang .
2023 IEEE 12TH DATA DRIVEN CONTROL AND LEARNING SYSTEMS CONFERENCE, DDCLS, 2023, :592-597
[24]   Optimal adaptive fuzzy FTC design for strict-feedback nonlinear uncertain systems with actuator faults [J].
Sun, Kangkang ;
Sui, Shuai ;
Tong, Shaocheng .
FUZZY SETS AND SYSTEMS, 2017, 316 :20-34
[25]   ELM-Based Adaptive Fault Tolerant Control of Uncertain Nonlinear Systems with Actuator Faults [J].
Nai, Yongqiang ;
Yang, Qingyu .
2018 37TH CHINESE CONTROL CONFERENCE (CCC), 2018, :5717-5722
[26]   Adaptive Fuzzy Tracking Control for Uncertain Nonlinear Systems With Multiple Actuators and Sensors Faults [J].
Yu, Dengxiu ;
Yang, Ming ;
Liu, Yan-Jun ;
Wang, Zhen ;
Chen, C. L. Philip .
IEEE TRANSACTIONS ON FUZZY SYSTEMS, 2023, 31 (01) :104-116
[27]   Adaptive neural output-feedback control for a class of output-constrained switched stochastic nonlinear systems [J].
Shen, Fei ;
Wang, Xinjun ;
Yin, Xinghui .
INTERNATIONAL JOURNAL OF SYSTEMS SCIENCE, 2021, 52 (16) :3526-3538
[28]   Fault-Estimation-Based Output-Feedback Adaptive FTC for Uncertain Nonlinear Systems With Actuator Faults [J].
Zhang, Lili ;
Yang, Guang-Hong .
IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, 2020, 67 (04) :3065-3075
[29]   Dynamic Surface Control for a Class of Output-Constrained Nonlinear Systems [J].
Zhang Zhikai ;
Duan Guangren ;
Hou Mingzhe .
PROCEEDINGS OF THE 35TH CHINESE CONTROL CONFERENCE 2016, 2016, :1129-1134
[30]   Adaptive fuzzy output feedback fault-tolerant control of switched nonlinear systems with sensor and actuator faults [J].
Liu, Shuai ;
Zhao, Lingli ;
Xiong, Yu ;
Xiang, Zhengrong ;
Yang, Xinsong .
INTERNATIONAL JOURNAL OF ADAPTIVE CONTROL AND SIGNAL PROCESSING, 2022, 36 (04) :980-998