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Adaptive fault estimation for interconnected nonlinear system with triangular forms

机译:具有三角形形式的互联非线性系统的自适应故障估计

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In this paper, a novel fault detection and estimation methodology is proposed for a class of interconnected nonlinear continues-time systems with triangular forms. In the distributed fault detection and estimation architecture, a local fault detector is utilized to generate a residual between the subsystem and its detector or observer. Moreover, a threshold for distributed fault detection and estimation in each subsystem are designed. Due to the universal approximation capabilities of the radial basis function neural networks, it is used to estimate the unknown fault dynamics. Finally, the proposed methods are verified in the simulation.
机译:本文针对一类具有三角形形式的互连非线性连续时间系统,提出了一种新颖的故障检测与估计方法。在分布式故障检测和评估架构中,使用本地故障检测器在子系统及其检测器或观察器之间生成残差。此外,设计了用于每个子系统中的分布式故障检测和估计的阈值。由于径向基函数神经网络具有通用逼近能力,因此可用于估算未知故障动态。最后,对所提方法进行了仿真验证。

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