Conceptual design of a selectable fractional-order differentiator for industrial applications

被引:0
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作者
Emmanuel A. Gonzalez
Ľubomír Dorčák
Concepción A. Monje
Juraj Valsa
Felicito S. Caluyo
Ivo Petráš
机构
[1] Jardine Schindler Elevator Corporation,Existing Installation Department
[2] Technical University of Košice,Institute of Control and Informatization of Production Processes Faculty of BERG
[3] University Carlos III de Madrid,Systems Engineering and Automation Department
[4] Brno University of Technology,School of Electrical, Electronics and Computer Engineering Mapua
[5] Institute of Technology,undefined
关键词
fractional calculus; fractional-order differentiator; fractional-order controller; Matlab; Primary 26A33; Secondary 65D25, 65D30, 93C05, 93C55;
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摘要
In the past decade, researchers working on fractional-order systems modeling and control have been considering working on the design and development of analog and digital fractional-order differentiators, i.e. circuits that can perform non-integer-order differentiation. It has been one of the major research areas under such field due to proven advantages over its integer-order counterparts. In particular, traditional integer-order proportional-integral-derivative (PID) controllers seem to be outperformed by fractional-order PID (FOPID or PIλDμ) controllers. Many researches have emerged presenting the possibility of designing analog and digital fractional-order differentiators, but only restricted to a fixed order. In this paper, we present the conceptual design of a variable fractional-order differentiator in which the order can be selected from 0 to 1 with an increment of 0.05. The analog conceptual design utilizes operational amplifiers and resistor-capacitor ladders as main components, while a generic microcontroller is introduced for switching purposes. Simulation results through Matlab and LTSpiceIV show that the designed resistor-capacitor ladders can perform as analog fractional-order differentiation.
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页码:697 / 716
页数:19
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