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An linear matrix inequality approach to simultaneous fault detection and control design for LTI systems

机译:LTI系统同时故障检测和控制设计的线性矩阵不等式方法

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In this paper, the problem of simultaneous fault detection and control(SFDC) for linear Time Invariant(LTI) systems in continuous-time case is considered, and a new design method of SFDC problem is realized based on linear matrix inequality( LMI). The SFDC problem is formulated as a mixed H2/H∞ optimization problem and a state observer is used to reconstruct the faults. By virtue of the Bounded Real Lemma and Shur Complement, a single unit called detector/controller(D/C) is obtained based on LMIs to stabilize the systems and detect the faults. To optimize the performances of the close-loop systems, a D-stable analysis for the D/C is also presented based on LMIs, therefore we can place the pole of the close-loop systems to an appointed region. The result of simulation indicats that the SFDC can stabilize the linear systems with fault happened and the detection can identify the fault clearly.
机译:本文考虑了连续时间线性不变线性系统的同时故障检测与控制问题,提出了一种基于线性矩阵不等式的SFDC问题的新设计方法。 SFDC问题被公式化为混合H2 /H∞优化问题,并使用状态观察器来重构故障。借助有限实数引理和Shur补码,可以基于LMI获得称为检测器/控制器(D / C)的单个单元,以稳定系统并检测故障。为了优化闭环系统的性能,还基于LMI对D / C进行了D稳定分析,因此我们可以将闭环系统的极点放置在指定区域。仿真结果表明,SFDC能够稳定发生故障的线性系统,并且通过检测可以清楚地识别出故障。

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