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Adaptive Fuzzy Event-Triggered Control for Stochastic Nonlinear Systems With Full State Constraints and Actuator Faults

机译:具有全状态约束和执行器故障的随机非线性系统的自适应模糊事件触发控制

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摘要

In this paper, an adaptive fuzzy output feedback control problem is investigated for a class of stochastic nonlinear systems in which the fuzzy logic systems are adopted to approximate the unknown nonlinear functions. A reduced-order observer and a general fault model are designed to observe the unavailable state variables and describe the actuator faults, respectively. An event-triggered control law is developed to reduce the communication burden from the controller to the actuator. Meanwhile, the barrier Lyapunov functions are constructed to guarantee that all the states of the stochastic nonlinear system are not to violate their constraints. Furthermore, an observer-based adaptive fuzzy event-triggered control strategy is proposed for the full-state-constrained nonlinear system with actuator faults based on backstepping technique, which can guarantee that all the signals in the closed-loop system are bounded and the tracking error converges to a small neighborhood of the origin in a finite time. Finally, simulation results are given to illustrate the effectiveness of the proposed control scheme.
机译:本文研究了一类随机非线性系统的自适应模糊输出反馈控制问题,其中采用模糊逻辑系统来近似未知的非线性函数。设计了降阶观测器和一般故障模型以分别观测不可用的状态变量并描述执行器故障。开发了事件触发的控制律,以减少从控制器到执行器的通信负担。同时,构造了障碍Lyapunov函数以确保随机非线性系统的所有状态都不会违反其约束。此外,针对基于执行器故障的全状态约束非线性系统,基于Backstepping技术,提出了一种基于观测器的自适应模糊事件触发控制策略,可以保证闭环系统中的所有信号有界且可跟踪。误差在有限时间内收敛到原点的一小部分。最后,仿真结果说明了所提出控制方案的有效性。

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