DocumentCode
619431
Title
Efficient analog implementations of fractional-order controllers
Author
Tepljakov, Aleksei ; Petlenkov, Eduard ; Belikov, Juri
Author_Institution
Dept. of Comput. Control, Tallinn Univ. of Technol., Tallinn, Estonia
fYear
2013
fDate
26-29 May 2013
Firstpage
377
Lastpage
382
Abstract
Fractional-order calculus is a very useful tool which extends classical, integer-order calculus and is used in contemporary modeling and control applications. It allows to describe dynamical systems more accurately, as well as gain valuable insight into some specific, memory, hereditary, and self-similarity properties of such systems. Fractional-order controllers, e.g. the PIλDμ controller and fractional lead-lag compensator, based on the added flexibility of fractional-order operators, are capable of superior performance compared to their integer-order counterparts. However, there exist multiple issues associated with the implementation of these fractional-order systems. In this work we consider the problem of efficient analog realization of fractionalorder controllers. We investigate the possibilities of network generation from fractional-order controller approximations derived using different methods proposed over the years. We consider the problem of practical feasibility of the resulting network as well as the preservation of controller performance specifications. Suitable tools, developed for the MATLAB environment in the context of the FOMCON (“Fractional-order Modeling and Control”) toolbox, are presented and discussed. Results of relevant experiments, encompassing the simulation of the designed circuit are provided.
Keywords
analogue circuits; approximation theory; calculus; control system CAD; network synthesis; FOMCON; Matlab environment; analog implementation; contemporary modeling; dynamical system; fractional order controller approximation; fractional order modeling and control; fractional order operator; integer order calculus; Approximation methods; Control systems; Impedance; MATLAB; Mathematical model; Resistors; Transfer functions; approximation methods; circuit synthesis; electrical network; fractional control; fractional-order calculus;
fLanguage
English
Publisher
ieee
Conference_Titel
Carpathian Control Conference (ICCC), 2013 14th International
Conference_Location
Rytro
Print_ISBN
978-1-4673-4488-3
Type
conf
DOI
10.1109/CarpathianCC.2013.6560573
Filename
6560573
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