首页> 外文会议>American Control Conference, 2009. ACC '09 >Distributed fault-tolerant control systems design against actuator faults and faulty interconnection links: An adaptive method
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Distributed fault-tolerant control systems design against actuator faults and faulty interconnection links: An adaptive method

机译:针对执行器故障和互连互连故障的分布式容错控制系统设计:一种自适应方法

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This paper presents an adaptive method to solve the robust fault-tolerant control (FTC) problem for a class of large scale systems against actuator faults and lossy interconnection links. In terms of the special distributed architectures, adaptation laws are proposed to estimate the unknown eventual faults of actuators and interconnections, constant external disturbances, and controller parameters on-line. Then a class of distributed state feedback controllers is constructed to automatically compensate the fault and disturbance effects based on the information from adaptive schemes. On the basis of Lyapunov stability theory, it shows that the resulting adaptive closed-loop large-scale system can be guaranteed to be asymptotically stable in the presence of uncertain faults of actuators and interconnections, and constant disturbances. The proposed design technique is finally evaluated in the light of a simulation example.
机译:本文提出了一种自适应方法来解决一类针对执行器故障和有损互连链路的大型系统的鲁棒容错控制(FTC)问题。根据特殊的分布式架构,提出了自适应定律,以估计执行器和互连的未知最终故障,恒定的外部干扰以及在线的控制器参数。然后,构造一类分布式状态反馈控制器,以基于自适应方案的信息自动补偿故障和干扰影响。基于李雅普诺夫稳定性理论,表明在存在执行器和互连不确定的故障以及恒定干扰的情况下,可以保证所得的自适应闭环大规模系统是渐近稳定的。最后根据仿真示例对提出的设计技术进行了评估。

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