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Robust fast adaptive fault estimation for systems with time-varying interval delay

机译:时变间隔时滞系统的鲁棒快速自适应故障估计

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This paper studies the problem of actuator fault estimation for linear continuous systems, which is subject to time-varying interval delay and norm-bounded external disturbance. Based on the fast adaptive fault estimation (FAFE) algorithm, our attention is focused on the design of fault estimation filters to guarantee the filtering error system to be asymptotically stable with a prescribed 11,, performance. A delay-dependent criterion is established to reduce the conservatism of designing procedure, and the FAFE algorithm can enhance the performance of fault estimation. A novel Lyapunov-Krasovskii function is employed, which includes the information of the upper and the lower bounds of the time delay. An improved sufficient condition for the existence of such a filter is established in terms of the linear matrix inequality (LMI) by the Schur complements and the cone complementary linearization algorithm. In addition, the results for the systems with time-varying interval delay are simplified when the delay is constant and the delay is not considered. Four illustrative examples are given to show the effectiveness of the proposed method. (C) 2015 The Franklin Institute. Published by Elsevier Ltd. All rights reserved.
机译:本文研究了线性连续系统的执行器故障估计问题,该问题受时变间隔延迟和受范数限制的外部干扰的影响。基于快速自适应故障估计(FAFE)算法,我们的注意力集中在故障估计滤波器的设计上,以确保滤波误差系统具有规定的11渐近稳定性能。建立了时延相关准则,以减少设计过程的保守性,FAFE算法可以提高故障估计的性能。使用了一种新颖的Lyapunov-Krasovskii函数,该函数包含时间延迟的上限和下限的信息。通过Schur补码和锥互补线性化算法,根据线性矩阵不等式(LMI),为存在此类滤波器提供了一个改进的充分条件。另外,当延迟恒定且不考虑延迟时,具有时变间隔延迟的系统的结果得到简化。给出了四个说明性的例子来说明所提出方法的有效性。 (C)2015富兰克林研究所。由Elsevier Ltd.出版。保留所有权利。

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