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首页> 外文期刊>International Journal of Control >Observer-based fault detection and isolation filter design for linear time-invariant systems
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Observer-based fault detection and isolation filter design for linear time-invariant systems

机译:线性时不变系统基于观测器的故障检测与隔离滤波器设计

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摘要

In this paper we consider a model-based fault detection and isolation problem for linear time-invariant dynamic systems subject to faults and disturbances. We use a state observer scheme that cancels the system dynamics and defines a residual vector signal that is sensitive only to faults and disturbances. We then design a stable fault detection and isolation filter such that the H-norm of the transfer matrix function from disturbances to the residual is minimised (for fault detection) subject to the constraint that the transfer matrix function from faults to residual is equal to a pre-assigned diagonal transfer matrix (for isolation of possibly simultaneous occurring faults). Our solution is given in the form of linear matrix inequalities using state-space techniques, as well as a model matching problem using matrix factorisation techniques. A numerical example is given to illustrate the efficiency of the fault detection and isolation filter.
机译:在本文中,我们考虑了受故障和干扰影响的线性时不变动态系统的基于模型的故障检测和隔离问题。我们使用状态观察器方案来取消系统动力学,并定义仅对故障和干扰敏感的残留矢量信号。然后,我们设计一个稳定的故障检测和隔离滤波器,以使从干扰到残差的传递矩阵函数的H范数最小化(用于故障检测),但要遵守从故障到残差的传递矩阵函数等于a的约束。预分配的对角线传递矩阵(用于隔离可能同时发生的故障)。我们的解决方案以使用状态空间技术的线性矩阵不等式以及使用矩阵分解技术的模型匹配问题的形式给出。数值例子说明了故障检测和隔离滤波器的效率。

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