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Observer-Based Fast Rate Fault Detection for a Class of Multirate Sampled-Data Systems

机译:一类多速率采样数据系统基于观测器的快速速率故障检测

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This note deals with the problem of observer-based fast rate fault detection for a class of multirate sampled-data (MSD) systems. Applying a lifting technique, a linear time-invariant (LTI) representation with slow sampling period is firstly obtained for the MSD systems and, based on this, an observer-based fault detection filter is considered as a residual generator. Then an optimization fault detection approach for LTI systems is modified to the residual generation for the MSD systems and, by solving a discrete-time Algebraic Riccati equation, a family of optimal solutions with causality constraint can be obtained. An inverse lifting operation on the generated residual implements its fast rate. The residual evaluation problem is also considered. A numerical example is finally given to illustrate the effectiveness of the proposed design techniques
机译:本说明解决了一类多速率采样数据(MSD)系统基于观察者的快速速率故障检测的问题。应用提升技术,首先为MSD系统获得了采样周期较慢的线性时不变(LTI)表示,并在此基础上将基于观察者的故障检测滤波器视为残差生成器。然后将LTI系统的优化故障检测方法修改为MSD系统的残差生成,并通过求解离散时间代数Riccati方程,获得具有因果关系约束的最优解系列。对生成的残差进行反向提升操作可实现其快速速率。还考虑了剩余评估问题。最后给出一个数值例子来说明所提出的设计技术的有效性。

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