Robust Observer Design with Application to Fault Detection

N. Viswanadham, K. Minto
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引用次数: 60

Abstract

A new scheme for robust estimation of the partial state of linear time-invariant multivariable systems is presented, and it is shown how this may be used for the detection of sensor faults in such systems. We consider an observer to be robust if it generates a faithful estimate of the plant state in the face of modelling uncertainty or plant perturbations. Using the Stable Factorization approach we formulate the problem of optimal robust observer design by minimizing an appropriate norm on the estimation error. A logical candidate is the 2-norm, corresponding to an H¿ optimization problem, for which solutions are readily available. In the special case of a stable plant, the optimal fault diagnosis scheme reduces to an internal model control architecture.
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鲁棒观测器设计在故障检测中的应用
提出了一种线性时不变多变量系统部分状态鲁棒估计的新方案,并说明了如何将该方案用于此类系统中传感器故障的检测。我们认为一个观测器是稳健的,如果它在面对建模不确定性或植物扰动时产生对植物状态的忠实估计。利用稳定因子分解方法,通过最小化估计误差的适当范数,提出了最优稳健观测器设计问题。一个合乎逻辑的候选者是2范数,对应于H¿优化问题,其解决方案很容易获得。在稳定对象的特殊情况下,将最优故障诊断方案简化为内模控制体系结构。
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