控制理论(社会学)
主动悬架
反推
执行机构
模糊逻辑
李雅普诺夫函数
观察员(物理)
工程类
断层(地质)
非线性系统
模糊控制系统
控制工程
振动
悬挂(拓扑)
计算机科学
自适应控制
数学
控制(管理)
人工智能
物理
电气工程
同伦
地震学
地质学
量子力学
纯数学
作者
Yongming Li,Shuo Ma,Kewen Li,Shaocheng Tong
标识
DOI:10.1109/tiv.2023.3272529
摘要
In this paper, a novel adaptive fuzzy output feedback fault-tolerant control (FTC) method is proposed for active suspension systems. The quarter active suspension systems studied in this paper contains electromagnetic actuator faults and unavailable state variables, such as the velocity of active suspensions and the electric current intensity of electromagnetic actuators. First, the complex spring nonlinear dynamics are approximated by fuzzy logic systems (FLSs), and the unmeasurable states are estimated by a fuzzy state observer. Based on an adaptive backstepping technique along with specific Lyapunov functions, a novel adaptive fuzzy output feedback FTC design is presented. To eliminate the need for knowing efficiency indexes, a fault compensation strategy is also developed by utilizing parameter estimation technique. In the presence of electromagnetic actuator failure, all vertical vibration states of the active suspension system remain stabilized. Eventually, the feasibility of the proposed control algorithm is evaluated through random road surface and bump road surface tests.
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