Fault-tolerant tracking control for a four-tank system benchmark via eigenstructure assignment and parameter estimation

P. Hajiani, J. Poshtan
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引用次数: 3

Abstract

While most research attention has been focused on fault detection and diagnosis, much less research effort has been devoted to failure accommodation. In this paper an active model based fault tolerant control system in case of major actuators failure is designed for a four-tank system benchmark and is simulated with the nonlinear model using Matlab. The four-tank system is regarded as a valuable experimental setup for investigating nonlinear multivariable feedback control as well as fault diagnosis. The faults are actuator faults that are modeled as a fall in actuators (pumps) gains which could lead to a large loss in the nominal performance. The fault tolerant controller is using an online parameter estimator as an FDD subsystem and an adaptive eigenstructure assignment state feedback controller as a reconfigurable controller. Simulation results are shown and compared with a non-fault-tolerant controller. The simulation results show promising performance increase due to the designed controller.
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基于特征结构分配和参数估计的四缸系统基准容错跟踪控制
虽然大多数研究都集中在故障检测和诊断上,但对故障调节的研究却很少。针对某四缸系统基准,设计了一种基于主动模型的主作动器失效容错控制系统,并利用Matlab对该非线性模型进行了仿真。四缸系统被认为是研究非线性多变量反馈控制和故障诊断的一个有价值的实验装置。故障是执行器故障,被建模为执行器(泵)增益的下降,这可能导致标称性能的巨大损失。容错控制器采用在线参数估计器作为FDD子系统,自适应特征结构分配状态反馈控制器作为可重构控制器。给出了仿真结果,并与非容错控制器进行了比较。仿真结果表明,所设计的控制器使系统性能有了较大的提高。
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