Comparison of variable fractional order PID controller for different types of variable order derivatives

D. Sierociuk, M. Macias
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引用次数: 24

Abstract

In this paper tuning algorithm of variable fractional PID controller for switching objective function is presented. The time constant parameters of PID controller are obtained by well-known, traditional Ziegler-Nichols methods. Then, the orders of integral and derivative actions are obtained based on minimization for different objective functions separately. This objective function can be switched during control process by changing orders of fractional PID controller. It leads to variable fractional order PID controller which can be implemented differently, according to above definitions. The paper presents also numerical results of applying proposed method to the control system. Then, obtained results for different type of variable order differences are compared and analysed.
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变分数阶PID控制器对不同类型的变阶导数的比较
提出了一种用于切换目标函数的变分数阶PID控制器的整定算法。PID控制器的时间常数参数是用传统的齐格勒-尼科尔斯法得到的。然后,分别对不同的目标函数进行最小化,得到积分作用阶数和导数作用阶数。在控制过程中,通过改变分数阶PID控制器的阶数,可以实现目标函数的切换。这就产生了可变分数阶PID控制器,可以根据上述定义进行不同的实现。文中还给出了将该方法应用于控制系统的数值结果。然后,对不同类型的变量阶差得到的结果进行了比较和分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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