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Parameter fault detection and estimation of a class of nonlinear systems using observers

机译:基于观测器的一类非线性系统的参数故障检测与估计

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摘要

The focus of this paper is on the detection and estimation of parameter faults in nonlinear systems with nonlinear fault distribution functions. The novelty of this contribution is that it handles the nonlinear fault distribution function; since such a fault distribution function depends not only on the inputs and outputs of the system but also on unmeasured states, it causes additional complexity in fault estimation. The proposed detection and estimation tool is based on the adaptive observer technique. Under the Lipschitz condition, a fault detection observer and adaptive diagnosis observer are proposed. Then, relaxation of the Lipschitz requirement is proposed and the necessary modification to the diagnostic tool is presented. Finally, the example of a one-wheel model with lumped friction is presented to illustrate the applicability of the proposed diagnosis method.
机译:本文的重点是在具有非线性故障分布函数的非线性系统中参数故障的检测和估计。这种贡献的新颖之处在于它可以处理非线性故障分布函数。由于这种故障分配功能不仅取决于系统的输入和输出,而且还取决于未测量的状态,因此会导致故障估计的额外复杂性。所提出的检测和估计工具基于自适应观察者技术。在Lipschitz条件下,提出了一种故障检测观测器和自适应诊断观测器。然后,提出了对Lipschitz要求的放宽,并提出了对诊断工具的必要修改。最后,以具有集中摩擦的单轮模型为例,以说明所提出的诊断方法的适用性。

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