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Remote output feedback stabilization for fractional-order systems via communication networks

机译:通过通信网络远程输出Fractional-Order系统的反馈稳定

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In this study, the problem of remote output feedback stabilization for fractional-order (FO) systems with input time-varying delay via communication networks is investigated. The order of the FO system denoted by α considered in this paper is in the range of 0 to 2. Additionally, the network induced time-varying delay is considered as being generated by a known FO dynamic system. We design static output feedback and dynamic output feedback controller, respectively, and show how the delay dynamics can be explicitly incorporated into the Networked Control System controller design. The basic idea is to use linear matrix inequality and receding horizon control framework. We use the receding horizon method to design a stabilizing control law that sets the poles of the closed-loop system. The proposed control law explicitly takes into account an estimation of the delay dynamics. Finally, numerical examples are offered to demonstrate the effectiveness of the proposed method.
机译:在该研究中,研究了通过通信网络的输入时变延迟的分数(FO)系统的远程输出反馈稳定问题。由本文考虑的α表示的FO系统的顺序在0至2的范围内。另外,网络感应的时变延迟被认为是由已知的FO动态系统产生的。我们分别设计静态输出反馈和动态输出反馈控制器,并展示如何明确地结合到网络控制系统控制器设计中。基本思想是使用线性矩阵不等式和后退地平线控制框架。我们使用后退地平线方法来设计一个稳定的控制法,该定律设定闭环系统的极点。拟议的控制法明确考虑了延迟动态的估计。最后,提供了数值例子来证明所提出的方法的有效性。

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