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Robust stabilizability of fractional order proportional integral controllers for fractional order plants with uncertain parameters: A new value set based approach

机译:具有不确定参数的分数阶工厂的分数顺序成比例积分控制器的鲁棒稳定性:基于新的价值

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摘要

In this paper, a new value set based approach is presented to study the robust stability of a fractional order plant with parametric uncertainty of the interval type by using a fractional order proportional integral controller. The concept of interval uncertainty means that the parameters of the system transfer functions are uncertain parameters that each adopts a value in a real interval. Based on the zero exclusion principle, it is necessary to check whether the value set of the characteristic polynomial for the infinite frequency range [ 0 , infinity ) includes the origin or not. To this end, in this paper, an auxiliary function is defined. The sign of this auxiliary function within a finite frequency range verifies whether the origin is included in the value set of the characteristic polynomial or not. The upper bound and the lower bound of this finite frequency range are obtained using the triangle inequality. Finally, the results of the numerical examples are provided, which confirm the effectiveness of the paper results.
机译:本文提出了一种基于新的价值集的方法,以研究分数阶工厂的鲁棒稳定性通过使用分数比例积分控制器来研究间隔类型的参数不确定度。间隔不确定度的概念意味着系统传输函数的参数是不确定的参数,每个参数都采用实际间隔中的值。基于零排除原理,有必要检查无限频率范围[0,Infinity)的特征多项式的值集是否包括原点。为此,在本文中,定义了辅助功能。在有限频率范围内的该辅助功能的标志验证了原点是否包含在特征多项式的值集中。使用三角形不等式获得该有限频率范围的上限和下限。最后,提供了数值例子的结果,该结果证实了纸张结果的有效性。

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