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Set Invariance Approach for Fault Detection and Isolation in Lure Systems by LPV-embedding

机译:基于LPV嵌入的诱饵系统故障检测与隔离的设置不变性方法

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摘要

This paper analyses conditions for computing invariant sets for Lure-type nonlinear systems via two different approaches, by bounding the nonlinear terms and by embedding the nonlinear system in a linear parameter varying (LPV) model. Furthermore, we show that by an appropriate redefinition of the system's nonlinear terms, the sets obtained by both approaches can be made identical. These methods can be used to compute sets characterising faultless (nominal) and faulty system behaviour, which are applicable for fault diagnosis under specific conditions that guarantee their separation. We also present a simple mechanism for sensor fault estimation and controller compensation, thus resulting in a closed-loop fault tolerant control system. An example of a pendulum system is provided to illustrate the proposed approach.
机译:本文通过两种不同的方法分析了Lure型非线性系统的不变集的计算条件,即对非线性项进行边界化和将非线性系统嵌入线性参数变化(LPV)模型中。此外,我们表明,通过对系统的非线性项进行适当的重新定义,两种方法获得的集合可以相同。这些方法可用于计算表征无故障(标称)和故障系统行为的集合,这些集合适用于保证其分离的特定条件下的故障诊断。我们还提出了一种用于传感器故障估计和控制器补偿的简单机制,从而产生了一个闭环容错控制系统。本文以摆锤系统为例来说明所提出的方法。

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