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Robust fault detection filter design for uncertain switched systems with adaptive threshold setting

机译:具有自适应阈值设置的不确定切换系统的鲁棒故障检测滤波器设计

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In this paper, the fault detection (FD) problem of uncertain discrete-time switched systems under the constrained switching law and external disturbances is addressed. In the multiple Lyapunov functions (MLF) framework with ℋ-/ℋ performance index, a robust fault detection filter (RFDF) is designed in order to generate a residual signal which is sensitive to the faults and robust against the disturbances. The design method is formulated to be solved by linear matrix inequality (LMI) technique. The main contribution in this paper is to improve the performance of the FD for switched systems by considering switch detection logics. The design of the RFDF is based on the local performance index of each subsystem. An adaptive threshold is set based on both, the bounds of disturbances and the individual performance index for each subsystem.
机译:本文研究了在开关定律和外部干扰约束下的不确定离散时间切换系统的故障检测问题。在性能指标为ℋ-/ℋ的多个Lyapunov函数(MLF)框架中,设计了鲁棒的故障检测滤波器(RFDF),以生成对故障敏感且鲁棒的残差信号。抵抗干扰。制定了设计方法以通过线性矩阵不等式(LMI)技术解决。本文的主要贡献是通过考虑开关检测逻辑来改善开关系统的FD性能。 RFDF的设计基于每个子系统的本地性能指标。基于扰动范围和每个子系统的单独性能指标来设置自适应阈值。

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