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Adaptive fuzzy fault-tolerant control with guaranteed tracking performance for nonlinear strict-feedback systems

机译:非线性严格反馈系统的具有跟踪性能的自适应模糊容错控制

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摘要

In this study, we propose two backstepping-based adaptive fuzzy fault-tolerant control (FTC) methods for a class of nonlinear strict-feedback systems with actuator failures. First, a traditional FTC (TFTC) method is considered. Our analysis shows that TFTC has poor tracking performance due to the existence of approximation errors and external disturbances. Inspired by the idea that the magnitudes of control inputs decrease as the error of the last step decreases in the backstepping procedure, we propose a new prescribed performance FTC (NPP-FTC) method based on the improved error transformation technique. Compared with previous methods where only the output tracking error is guaranteed within the prescribed performance bound (PPB), we show that the state tracking error for each step between the intermediate control and virtual control remains within the PPB regardless of actuator faults. The main advantage of the NPP FTC method is that the tracking errors and magnitudes of the control inputs can be reduced by adjusting the PPB parameters of the errors in the first and last steps. Our simulation results demonstrate the effectiveness of the proposed NPP FTC method. (C) 2015 Elsevier B.V. All rights reserved.
机译:在这项研究中,我们针对具有执行器故障的一类非线性严格反馈系统,提出了两种基于反演的自适应模糊容错控制(FTC)方法。首先,考虑传统的FTC(TFTC)方法。我们的分析表明,由于存在近似误差和外部干扰,TFTC的跟踪性能较差。受控制输入量随反步过程中最后一步的误差减小而减小的想法的启发,我们提出了一种基于改进的误差变换技术的新规定性能FTC(NPP-FTC)方法。与以前的方法相比,以前的方法仅在规定的性能范围(PPB)之内保证了输出跟踪误差,我们证明了中间控制和虚拟控制之间每个步骤的状态跟踪误差都保持在PPB内,而与执行器故障无关。 NPP FTC方法的主要优点是,可以通过在第一步和最后一步中调整误差的PPB参数来减少跟踪误差和控制输入的幅度。我们的仿真结果证明了所提出的NPP FTC方法的有效性。 (C)2015 Elsevier B.V.保留所有权利。

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