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含分数阶控制器的线性反馈系统的时域仿真高效方法。

Efficient method for time-domain simulation of the linear feedback systems containing fractional order controllers.

机构信息

Department of Electrical and Computer Engineering, Zanjan University, Zanjan, P.O. Box: 313, Iran.

出版信息

ISA Trans. 2011 Apr;50(2):170-6. doi: 10.1016/j.isatra.2011.01.002. Epub 2011 Jan 26.

Abstract

One main approach for time-domain simulation of the linear output-feedback systems containing fractional-order controllers is to approximate the transfer function of the controller with an integer-order transfer function and then perform the simulation. In general, this approach suffers from two main disadvantages: first, the internal stability of the resulting feedback system is not guaranteed, and second, the amount of error caused by this approximation is not exactly known. The aim of this paper is to propose an efficient method for time-domain simulation of such systems without facing the above mentioned drawbacks. For this purpose, the fractional-order controller is approximated with an integer-order transfer function (possibly in combination with the delay term) such that the internal stability of the closed-loop system is guaranteed, and then the simulation is performed. It is also shown that the resulting approximate controller can effectively be realized by using the proposed method. Some formulas for estimating and correcting the simulation error, when the feedback system under consideration is subjected to the unit step command or the unit step disturbance, are also presented. Finally, three numerical examples are studied and the results are compared with the Oustaloup continuous approximation method.

摘要

一种用于对包含分数阶控制器的线性输出反馈系统进行时域仿真的主要方法是用整数阶传递函数来近似控制器的传递函数,然后进行仿真。一般来说,这种方法有两个主要的缺点:第一,不能保证得到的反馈系统的内部稳定性,第二,这种逼近引起的误差量不能确切知道。本文的目的是提出一种在不面临上述缺点的情况下对这种系统进行时域仿真的有效方法。为此,将分数阶控制器用整数阶传递函数(可能与延迟项结合)来近似,以保证闭环系统的内部稳定性,然后进行仿真。还表明,所得到的近似控制器可以通过所提出的方法有效地实现。还给出了一些在考虑的反馈系统受到单位阶跃命令或单位阶跃干扰时估计和校正仿真误差的公式。最后,研究了三个数值实例,并将结果与 Oustaloup 连续逼近方法进行了比较。

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