Robust guaranteed cost fault-tolerant control for uncertain NCS with fast interval time-varying delay

Wei Li, Huichao Cao, Erchao Li
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引用次数: 5

Abstract

This paper investigates the problem of robust guaranteed cost fault-tolerant control for networked control system with norm-bounded uncertain parameters. Both network-induced delay and data packet dropout are taken into consideration, and data packet dropout is regard as a kind of special delay. The synthetical delay is a interval time-varying delay, and possesses fast time-varying characteristic, namely, the derivative of delay is more than 1 and is difficult to determine the upper bound. Based on state feedback control strategy and the Lyapunov-Krasovakii approach, the delay-dependent robust guaranteed cost fault-tolerant control sufficient condition against sensor failures is derived. Because the Lyapunov- Razumikhin approach is not used and the lower bound of delay is introduced, the results possess less conservativeness. Meanwhile, the design approach of the optimal controller are given. Finally, an example is used to illustrate the effectiveness and the feasibility of proposed approach.
快速区间时变时滞不确定网络控制的鲁棒保代价容错控制
研究了具有范数有界不确定参数的网络控制系统的鲁棒保代价容错控制问题。同时考虑了网络引起的延迟和数据包丢失,并将数据包丢失视为一种特殊的延迟。该综合时滞是区间时变时滞,具有快速时变特性,即时滞的导数大于1,且上界难以确定。基于状态反馈控制策略和Lyapunov-Krasovakii方法,推导了时延相关鲁棒保代价容错控制对传感器故障的充分条件。由于没有使用Lyapunov- Razumikhin方法,并且引入了延迟的下界,结果具有较小的保守性。同时,给出了最优控制器的设计方法。最后,通过一个算例说明了所提方法的有效性和可行性。
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