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Switching fault-tolerant control by Youla parametrization

机译:通过Youla参数化切换容错控制

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In this paper, we propose a switching fault-tolerant control (FTC) approach for linear systems subject to time-varying actuator and sensor faults. The faults under consideration include effectiveness loss and outage of actuators and sensors. All possible fault scenarios are categorized to different fault cases according to fault type and location. For each case, a parameter-dependent (or constant gain) FTC will be designed to stabilize the faulty system with optimal controlled performance. The synthesis condition of such a local FTC control laws will be formulated in terms of linear matrix inequalities (LMIs). To achieve both local optimal performance and switching stability, Youla parameterizations of individual local FTCs are derived and applied to the closed-loop system. The quadratic stability of fast switching closed-loop system is guaranteed by a common quadratic Lyapunov function. A numerical example is used to demonstrate the proposed switching fault-tolerant control approach on a simple faulty systems with multiple faults.
机译:在本文中,我们提出了一种用于时变执行器和传感器故障的线性系统的开关容错控制(FTC)方法。正在考虑的故障包括效率损失以及执行器和传感器故障。根据故障类型和位置,将所有可能的故障情况分类为不同的故障情况。对于每种情况,将设计一个参数相关(或恒定增益)的FTC,以通过最佳控制性能来稳定故障系统。此类本地FTC控制律的综合条件将根据线性矩阵不等式(LMI)来表述。为了同时达到本地最佳性能和开关稳定性,导出了各个本地FTC的Youla参数化并将其应用于闭环系统。快速切换闭环系统的二次稳定性由通用二次Lyapunov函数保证。数值算例说明了在具有多个故障的简单故障系统上所提出的开关容错控制方法。

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