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首页> 外文期刊>Advances in Difference Equations >Robust Stabilization of Fractional-Order Systems with Interval Uncertainties via Fractional-Order Controllers
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Robust Stabilization of Fractional-Order Systems with Interval Uncertainties via Fractional-Order Controllers

机译:通过分数阶控制器对具有区间不确定性的分数阶系统进行鲁棒镇定

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We propose a fractional-order controller to stabilize unstable fractional-order open-loop systems with interval uncertainty whereas one does not need to change the poles of the closed-loop system in the proposed method. For this, we will use the robust stability theory of Fractional-Order Linear Time Invariant (FO-LTI) systems. To determine the control parameters, one needs only a little knowledge about the plant and therefore, the proposed controller is a suitable choice in the control of interval nonlinear systems and especially in fractional-order chaotic systems. Finally numerical simulations are presented to show the effectiveness of the proposed controller.
机译:我们提出了一种分数阶控制器,用于稳定具有区间不确定性的不稳定分数阶开环系统,而在该方法中,无需更改闭环系统的极点。为此,我们将使用分数阶线性时不变(FO-LTI)系统的鲁棒稳定性理论。要确定控制参数,只需要对设备有一点了解,因此,所提出的控制器是区间非线性系统(尤其是分数阶混沌系统)控制的合适选择。最后,通过数值仿真表明了所提出控制器的有效性。

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