Yang Wengui, Yu Wenwu, Zheng Wei Xing
IEEE Trans Cybern. 2022 Aug;52(8):8439-8452. doi: 10.1109/TCYB.2020.3043039. Epub 2022 Jul 19.
The problem of fault-tolerant adaptive fuzzy tracking control against actuator faults is investigated in this article for a type of uncertain nonaffine fractional-order nonlinear full-state-constrained multi-input-single-output (MISO) system. By means of the existence theorem of the implicit function and the intermediate value theorem, the design difficulty arising from nonaffine nonlinear terms is surmounted. Then, the unknown ideal control inputs are approximated by using some suitable fuzzy-logic systems. An adaptive fuzzy fault-tolerant control (FTC) approach is developed by employing the barrier Lyapunov functions and estimating the compounded disturbances. Moreover, under the drive of the reference signals, a sufficient condition ensuring semiglobal uniform ultimate boundedness is obtained for all the signals in the closed-loop system, and it is proved that all the states of nonaffine nonlinear fractional-order systems are guaranteed to remain inside the predetermined compact set. Finally, two numerical examples are provided to exhibit the validity of the designed adaptive fuzzy FTC approach.
本文针对一类具有不确定非仿射分数阶非线性全状态约束的多输入单输出(MISO)系统,研究了针对执行器故障的容错自适应模糊跟踪控制问题。借助隐函数存在定理和介值定理,克服了非仿射非线性项带来的设计困难。然后,利用一些合适的模糊逻辑系统对未知理想控制输入进行逼近。通过采用障碍Lyapunov函数并估计复合干扰,开发了一种自适应模糊容错控制(FTC)方法。此外,在参考信号的驱动下,得到了闭环系统中所有信号半全局一致最终有界的充分条件,并证明了非仿射非线性分数阶系统的所有状态都保证保持在预定的紧致集内。最后,给出了两个数值例子来说明所设计的自适应模糊FTC方法的有效性。