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Linear fractional order controllers; A survey in the frequency domain

机译:线性分数阶控制器;频域中的调查

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Today, there is a great tendency toward using fractional calculus to solve engineering problems. The control is one of the fields in which fractional calculus has attracted a lot of attention. On the one hand, fractional order dynamic models simulate characteristics of real dynamic systems better than integer order models. On the other hand, Fractional Order (FO) controllers outperform Integer Order (10) controllers in many cases. FO-controllers have been studied in both time an frequency domain. The latter one is the fundamental tool for industry to design FO-controllers. The scope of this paper is to review research which has been carried out on FO-controllers in the frequency domain. In this review paper, the concept of fractional calculus and their applications in the control problems are introduced. In addition, basic definitions of the fractional order differentiation and integration are presented. Then, four common types of FO-controllers are briefly presented and after that their representative tuning methods are introduced. Furthermore, some useful continuous and discrete approximation methods of FO-controllers and their digital and analogue implementation methods are elaborated. Then, some Matlab toolboxes which facilitate utilizing FO calculus in the control field are presented. Finally, advantages and disadvantages of using FO calculus in the control area are discussed. To wrap up, this paper helps beginners to get started rapidly and learn how to select, tune, approximate, discretize, and implement FO-controllers in the frequency domain. (C) 2019 Elsevier Ltd. All rights reserved.
机译:今天,利用分数微积分解决工程问题存在巨大倾向。控制是分数微积分引起了很多关注的领域之一。一方面,分数级动态模型比整数型号更好地模拟实际动态系统的特性。另一方面,在许多情况下,分数阶(FO)控制器优于整数(10)控制器。已经在频域中研究了FO控制器。后者是工业设计FO控制器的基本工具。本文的范围是审查已经在频域的FO控制器上进行的研究。在本文中,介绍了分数微积分的概念及其在控制问题中的应用。此外,还提出了分数级分化和集成的基本定义。然后,简要介绍了四种常见类型的FO控制器,并且在介绍其代表调节方法之后。此外,详细阐述了FO控制器的一些有用的连续和离散近似方法及其数字和模拟实现方法。然后,呈现了一些MATLAB工具箱,其有助于在控制场中使用FO微积分。最后,讨论了控制区域中使用FO微积分的优点和缺点。要括起来,本文有助于初学者快速启动,并学习如何选择,调整,近似,离散化和在频域中实现FO控制器。 (c)2019 Elsevier Ltd.保留所有权利。

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