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Adaptive fault detection and estimation scheme for a class of uncertain nonlinear systems

机译:一类不确定非线性系统的自适应故障检测与估计方案

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This paper presents a novel fault detection and estimation (FDE) scheme for a class of Lipschitz nonlinear systems subjected to modeling and measurement uncertainties. Many works in this field assume that the states of the system are measurable and the fault function acts as an additive term. The proposed FDE strategy deals with the uncertain nonlinear systems subjected to multiplicative faults, and it does not rely on availability of the full state. Multiplicative fault corresponds to the parameter or structure changes in the system or in the process model. Also, actuator gain fault is another important fault type which can be modeled as a multiplicative fault. The effects of this kind of fault are combined with the inputs and outputs of the system in a multiplicative form which, in turn, make the detection and estimation of the fault complex. The proposed scheme is based on an adaptive diagnostic observer that not only can estimate the states of the system and generate the residual signal simultaneously, but also is able to estimate the characteristic and magnitude of an unknown fault. In the fault detection step, the threshold is derived analytically to ensure the robustness of the proposed detection scheme against uncertainties. Also in the fault estimation step, a robust adaptive law based on the switching -modification is developed to estimate the detected fault accurately. Design steps of the proposed estimation scheme are introduced in the form of LMI problem. This formulation provides an effective way to calculate the design parameters. The proposed FDE scheme guarantees that all signals are uniformly ultimately bounded. Simulation results of a single-link, flexible joint, robotic arm show the effectiveness and robustness of the proposed FDE strategy.
机译:本文针对一类建模和测量不确定性的Lipschitz非线性系统,提出了一种新颖的故障检测与估计(FDE)方案。该领域中的许多工作都假设系统的状态是可测量的,并且故障功能充当附加项。所提出的FDE策略处理遭受乘法故障的不确定非线性系统,并且不依赖于全状态的可用性。倍增故障对应于系统或过程模型中的参数或结构更改。同样,执行器增益故障是另一种重要的故障类型,可以将其建模为乘法故障。此类故障的影响与系统的输入和输出以乘法形式结合在一起,从而使故障的检测和估计变得复杂。所提出的方案基于自适应诊断观测器,该诊断观测器不仅可以估计系统的状态并同时生成残差信号,而且还可以估计未知故障的特征和大小。在故障检测步骤中,通过分析得出阈值,以确保所提出的检测方案针对不确定性的鲁棒性。同样在故障估计步骤中,开发了基于开关修改的鲁棒自适应律,以准确估计检测到的故障。提出的估计方案的设计步骤以LMI问题的形式介绍。该公式提供了一种计算设计参数的有效方法。所提出的FDE方案保证所有信号最终均一地受限。单链接柔性关节机械臂的仿真结果表明了所提出的FDE策略的有效性和鲁棒性。

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