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Adaptive compensation for infinite number of actuator failures with an application to flight control

机译:自适应补偿无穷数量的执行器故障并将其应用于飞行控制

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In this paper, a new adaptive compensation control scheme is proposed for a class of nonlinear systems with unknown parameters and unknown actuator failures. The normal operation case and different failure cases of actuators are unified through a time-varying model. By introducing a smooth function, an integrable auxiliary signal, and a bound estimation approach, the effect of failures is successfully compensated for, and the total number of failures is not restricted to be finite. It is shown that all closed-loop signals are globally uniformly bounded, and the tracking error converges to zero asymptotically regardless of the possibly infinite number of actuator failures. An application to the longitudinal dynamic model of a twin otter aircraft is presented to illustrate the effectiveness of the proposed scheme. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:针对一类参数未知,执行器故障未知的非线性系统,提出了一种新的自适应补偿控制方案。通过时变模型统一了执行器的正常运行情况和不同的故障情况。通过引入平滑函数,可积分辅助信号和边界估计方法,可以成功地补偿故障的影响,并且故障的总数不受限制。结果表明,所有闭环信号在全局范围内均一地有界,并且跟踪误差渐近地收敛到零,而与执行器故障的可能数量无关。提出了一种在双水獭飞机纵向动力学模型中的应用,以说明所提方案的有效性。版权所有(c)2015 John Wiley&Sons,Ltd.

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