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Adaptive fault diagnosis observer design for a class of nonlinear system with model uncertainties

机译:一类具有模型不确定性的非线性系统的自适应故障诊断观测器设计

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In this paper, we propose an adaptive fault diagnosis observer (AFDO) for a class of nonlinear systems with uncertainties. The AFDO, which estimates the faults in real time, is designed based on Lyapunov analysis. We design the adaptive fault estimation laws for AFDO by using the characteristics of output errors. Moreover, in order to handle the chattering problem, we modify the output error term to saturation term. And we add the e-modification term to handle the parameter drift, which also relaxes the assumption that the information about the upper bound of disturbancees is known prior. By Lyapunov analysis, we prove the uniform ultimately boundedness (UUB) of the system output error and unpredictable faults. Finally, we verify the effectiveness of the proposed method through computer simulations.
机译:在本文中,我们为一类具有不确定性的非线性系统提出了一种自适应故障诊断观测器(AFDO)。 AFDO基于Lyapunov分析来实时估计故障。利用输出误差的特征,设计了针对AFDO的自适应故障估计律。此外,为了处理颤动问题,我们将输出误差项修改为饱和项。并且我们添加了电子修改项来处理参数漂移,这也放宽了关于干扰上限的信息是事先已知的假设。通过Lyapunov分析,我们证明了系统输出错误和不可预测的故障的统一最终有界性(UUB)。最后,我们通过计算机仿真验证了该方法的有效性。

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