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Fault-tolerant control of linear uncertain systems using H∞ robust predictive control

机译:基于H∞鲁棒预测控制的线性不确定系统的容错控制。

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摘要

The robust fault-tolerant control problem of linear uncertain systems is studied. It is shown that a solution for this problem can be obtained from a H∞ robust predictive controller (RMPC) by the method of linear matrix inequality (LMI). This approach has the advantages of both H∞ control and MPC: the robustness and ability to handle constraints explicitly. The robust closed-loop stability of the linear uncertain system with input and output constraints is proven under an actuator and sensor faults condition. Finally, satisfactory results of simulation experiments verify the validity of this algorithm.
机译:研究了线性不确定系统的鲁棒容错控制问题。结果表明,可以通过线性矩阵不等式(LMI)的方法从H∞鲁棒预测控制器(RMPC)中获得此问题的解决方案。这种方法具有H∞控制和MPC的优点:鲁棒性和显式处理约束的能力。在执行器和传感器出现故障的情况下,具有输入和输出约束的线性不确定系统具有鲁棒的闭环稳定性。最后,仿真实验令人满意的结果证明了该算法的有效性。

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