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Barrier Lyapunov Function-Based Adaptive Fuzzy FTC for Switched Systems and Its Applications to Resistance–Inductance–Capacitance Circuit System

机译:基于障碍Lyapunov功能的自适应模糊FTC,用于交换系统及其在电阻电容电容电路系统的应用

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In this article, the adaptive fault-tolerant control (FTC) problem is solved for a switched resistance-inductance-capacitance (RLC) circuit system. Due to the existence of faults which may lead to instability of subsystems, the innovation of this article is that the unstable subsystems are taken into account in the frame of output constraint and unmeasurable states. Obviously, there are not any unstable subsystems in unswitched systems. The unstable subsystems will involve many serious consequences and difficulties. Since the system states are unavailable, a switched state observer is designed. In addition, the fuzzy-logic systems (FLSs) are employed to approximate unknown internal dynamics in the controller design procedure. Then, the barrier Lyapunov function (BLF) is exploited to guarantee that the system output satisfy its constrained interval. Moreover, by using the average dwell-time method, all signals in the resulting systems are proofed to be bounded even when faults occur. Finally, the proposed strategy is carried out on the switched RLC circuit system to show the effectiveness and practicability.
机译:在本文中,为开关电阻电感 - 电容(RLC)电路系统解决了自适应容错控制(FTC)问题。由于存在可能导致子系统不稳定性的故障,本文的创新是在输出约束和不可估量的状态帧中考虑了不稳定的子系统。显然,联型系统中没有任何不稳定的子系统。不稳定的子系统将涉及许多严重的后果和困难。由于系统状态不可用,因此设计了一个交换状态观察者。另外,模糊逻辑系统(FLS)用于在控制器设计过程中近似未知的内部动态。然后,利用屏障Lyapunov函数(BLF)以保证系统输出满足其约束间隔。此外,通过使用平均停留时间方法,即使在发生故障时,也可以将所得系统中的所有信号均被界定。最后,在交换式RLC电路系统上进行了所提出的策略,以显示有效性和实用性。

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