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Fault-Tolerant Control for Discrete Linear Systems with Consideration of Actuator Saturation and Performance Degradation

机译:考虑致动器饱和度和性能下降的离散线性系统容错控制

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This paper proposes an active fault-tolerant control method for discrete-time linear systems with actuator faults. The main contribution of this paper lies in the capability of dealing with the actuator saturation and accepting the performance degradation. In this paper, a fault estimation observer is first designed by constructing an equivalent descriptor system model of the original plant. To accept performance degradation of the post-fault system, a degradation factor is introduced into the reference model. In the fault-tolerant control design, both the actuator saturation and performance degradation are considered, and the fault-tolerant control input and the degradation factor are simultaneously designed by solving a constrained optimization problem. Finally, an aircraft example is simulated to demonstrate the effectiveness and performance of the proposed method.
机译:本文提出了一种具有执行器故障的离散时间线性系统的积极容错控制方法。本文的主要贡献在于处理执行器饱和度并接受性能下降的能力。在本文中,首先通过构造原始工厂的等效描述符系统模型来设计故障估计观察者。为了接受后故障系统的性能下降,将劣化因子引入参考模型。在容错控制设计中,考虑致动器饱和度和性能劣化,并且通过解决受约束的优化问题同时设计容错控制输入和劣化因子。最后,模拟了飞机示例以证明所提出的方法的有效性和性能。

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