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具有全状态约束的非仿射随机非线性系统的鲁棒自适应容错跟踪控制

Robust Adaptive Fault-Tolerant Tracking Control for Nonaffine Stochastic Nonlinear Systems With Full-State Constraints.

作者信息

Wu Li-Bing, Park Ju H, Zhao Nan-Nan

出版信息

IEEE Trans Cybern. 2020 Aug;50(8):3793-3805. doi: 10.1109/TCYB.2019.2940296. Epub 2019 Sep 23.

Abstract

In this article, the adaptive fault-tolerant tracking control problem of nonaffine stochastic nonlinear systems with actuator failures and full-state constraints is studied. To surmount the design difficulty from nonaffine nonlinear term with multi-input and single-output (MISO) faulty modes, a novel nonlinear fault compensation function with adjustable parameter factor is first introduced to establish a standard adaptive fault-tolerant control (AFTC) strategy based on the mean-value theorem. Then, the remaining nonlinear function, including the partial loss of effectiveness, outage, and stuck cases, together with the constructed compound nonlinear function can be approximated by using the suitable fuzzy-logic system (FLS). Moreover, it is shown that all the states of nonaffine stochastic nonlinear systems are not violating the preset constraint bounds by employing the barrier Lyapunov functions (BLFs). Also, the given adaptive controller can guarantee all the closed-loop signals are uniformly ultimately bounded (UUB) in probability in the sense of fourth-moment within the appropriate compact sets. Finally, two simulation examples are given to demonstrate the validity of the proposed method.

摘要

本文研究了具有执行器故障和全状态约束的非仿射随机非线性系统的自适应容错跟踪控制问题。为克服多输入单输出(MISO)故障模式下非仿射非线性项带来的设计困难,首先引入一种具有可调参数因子的新型非线性故障补偿函数,基于均值定理建立标准自适应容错控制(AFTC)策略。然后,利用合适的模糊逻辑系统(FLS)对包括部分失效、中断和卡死情况在内的剩余非线性函数以及构造的复合非线性函数进行逼近。此外,通过使用障碍Lyapunov函数(BLF)表明非仿射随机非线性系统的所有状态均不违反预设的约束边界。同时,给定的自适应控制器能够保证在适当的紧集内,所有闭环信号在四阶矩意义下依概率一致最终有界(UUB)。最后,给出两个仿真例子以验证所提方法的有效性。

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