A strategy for fault tolerant control of full-state feedback linearisable nonlinear systems

A. N. Hanafi, M. Seron, J. Doná
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Abstract

We present a scheme for fault detection and isolation (FDI) and controller reconfiguration (CR) in full–state feedback linearisable nonlinear systems subject to actuator faults. The nonlinear plant is feedback–linearised and then controlled by a linear controller that satisfies a requirement of set–point tracking. Ultimate bound arguments are used to detect and isolate the healthy or faulty system operation. Then, the virtual actuator methodology is applied to reconFigure the control laws after the occurrence of actuator faults. This proposed scheme is illustrated by an example of the Chua circuit.
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全状态反馈线性化非线性系统的容错控制策略
提出了一种基于执行器故障的全状态反馈线性可调非线性系统的故障检测与隔离(FDI)和控制器重构(CR)方案。对非线性对象进行反馈线性化,然后由满足设定点跟踪要求的线性控制器进行控制。最终边界参数用于检测和隔离正常或故障的系统操作。然后,应用虚拟执行器方法在执行器发生故障后重新配置控制律。该方案以蔡氏电路为例进行了说明。
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