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Adaptive compensation for infinite number of actuator failures or faults

机译:自适应补偿,用于无数个执行器故障或故障

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摘要

It is both theoretically and practically important to investigate the problem of accommodating infinite number of actuator failures or faults in controlling uncertain systems. However, there is still no result available in developing adaptive controllers to address this problem. In this paper, a new adaptive failure/fault compensation control scheme is proposed for parametric strict feedback nonlinear systems. The techniques of nonlinear damping and parameter projection are employed in the design of controllers and parameter estimators, respectively. It is proved that the boundedness of all closed-loop signals can still be ensured in the case with infinite number of failures or faults, provided that the time interval between two successive changes of failure/fault pattern is bounded below by an arbitrary positive number. The performance of the tracking error in the mean square sense with respect to the frequency of failure/fault pattern changes is also established. Moreover, asymptotic tracking can be achieved when the total number of failures and faults is finite.
机译:研究在控制不确定系统中容纳无数个执行器故障或故障的问题在理论上和实践上都是重要的。但是,开发自适应控制器来解决此问题仍然没有可用的结果。本文针对参数严格反馈非线性系统,提出了一种新的自适应故障/故障补偿控制方案。非线性阻尼技术和参数投影技术分别用于控制器和参数估计器的设计中。已经证明,在故障或故障数量无限的情况下,如果连续两次故障/故障模式变化之间的时间间隔以任意正数为边界,仍然可以确保所有闭环信号的有界性。还建立了关于故障/故障模式改变的频率的均方根跟踪误差的性能。此外,当故障和故障的总数有限时,可以实现渐近跟踪。

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