Adaptive fault-tolerant output feedback control of uncertain nonlinear systems with unknown high-frequency gain sign

C. Hou, Li-Sheng Hu
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Abstract

This article develops an adaptive control method for accommodating actuator faults in a class of unknown nonlinear systems without a priori knowledge of high-frequency gain. An adaptive high-gain K-filters with switching laws is proposed to suppress the nonlinearities which are dependent on the unmeasured states. Combining the Nussbaum-gain approach with backstepping design, an adaptive controller with high-gain function can be obtained. It is proved that the proposed control approach can guarantee that all the signals of the resulting closed-loop system are bounded and tracking error can be made as small as desired by appropriate choice of the design parameters. Simulation results are presented to show the effectiveness of the proposed scheme.
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高频增益符号未知不确定非线性系统的自适应容错输出反馈控制
针对一类未知非线性系统的致动器故障,提出了一种不需要先验高频增益知识的自适应控制方法。提出了一种具有开关律的自适应高增益k滤波器,用于抑制非测量态的非线性。将努斯鲍姆增益方法与反步设计相结合,可以得到具有高增益功能的自适应控制器。结果表明,所提出的控制方法可以保证闭环系统的所有信号都是有界的,并且通过适当选择设计参数可以使跟踪误差尽可能小。仿真结果表明了该方案的有效性。
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