Synthesis of elements with fractional-order impedance based on homogenous distributed resistive-capacitive structures and genetic algorithm

The work proposes a synthesis method of capacitive fractional-order impedance element which is composed of homogenous distributed resistive-capacitive (RC) structures (lines). The method employs genetic algorithm and searches for optimal connection schemes and parameters of the partial RC structures...

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Main Authors: Pyotr Arkhipovich Ushakov, Kirill Olegovich Maksimov, Stanislav Valerevich Stoychev, Vladimir Gennadievich Gravshin, David Kubanek, Jaroslav Koton
Format: Article
Language:English
Published: Elsevier 2020-09-01
Series:Journal of Advanced Research
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2090123220301302
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author Pyotr Arkhipovich Ushakov
Kirill Olegovich Maksimov
Stanislav Valerevich Stoychev
Vladimir Gennadievich Gravshin
David Kubanek
Jaroslav Koton
author_facet Pyotr Arkhipovich Ushakov
Kirill Olegovich Maksimov
Stanislav Valerevich Stoychev
Vladimir Gennadievich Gravshin
David Kubanek
Jaroslav Koton
author_sort Pyotr Arkhipovich Ushakov
collection DOAJ
description The work proposes a synthesis method of capacitive fractional-order impedance element which is composed of homogenous distributed resistive-capacitive (RC) structures (lines). The method employs genetic algorithm and searches for optimal connection schemes and parameters of the partial RC structures. The synthesis algorithm is described in detail including the coding of the properties of the structures for the purpose of the genetic algorithm. The user interface of the design tool is introduced and the input and output parameters of the synthesis are explained. The algorithm was verified by computer simulations and particularly by measurements of element samples fabricated in thick-film technology. The results correspond to the required impedance characteristics, which confirm the validity of the synthesis method.
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spelling doaj.art-e7b8a56d19b644178c37f351d4e32d402022-12-22T00:45:04ZengElsevierJournal of Advanced Research2090-12322020-09-0125275283Synthesis of elements with fractional-order impedance based on homogenous distributed resistive-capacitive structures and genetic algorithmPyotr Arkhipovich Ushakov0Kirill Olegovich Maksimov1Stanislav Valerevich Stoychev2Vladimir Gennadievich Gravshin3David Kubanek4Jaroslav Koton5Faculty of Instrumentation Engineering, Kalashnikov Izhevsk State Technical University, Studencheskaya 7, 426 069 Izhevsk, Russian FederationFaculty of Instrumentation Engineering, Kalashnikov Izhevsk State Technical University, Studencheskaya 7, 426 069 Izhevsk, Russian FederationFaculty of Instrumentation Engineering, Kalashnikov Izhevsk State Technical University, Studencheskaya 7, 426 069 Izhevsk, Russian FederationFaculty of Instrumentation Engineering, Kalashnikov Izhevsk State Technical University, Studencheskaya 7, 426 069 Izhevsk, Russian FederationFaculty of Electrical Engineering and Communication, Brno University of Technology, Technicka 3082/12, 616 00 Brno, Czech Republic; Corresponding author.Faculty of Electrical Engineering and Communication, Brno University of Technology, Technicka 3082/12, 616 00 Brno, Czech RepublicThe work proposes a synthesis method of capacitive fractional-order impedance element which is composed of homogenous distributed resistive-capacitive (RC) structures (lines). The method employs genetic algorithm and searches for optimal connection schemes and parameters of the partial RC structures. The synthesis algorithm is described in detail including the coding of the properties of the structures for the purpose of the genetic algorithm. The user interface of the design tool is introduced and the input and output parameters of the synthesis are explained. The algorithm was verified by computer simulations and particularly by measurements of element samples fabricated in thick-film technology. The results correspond to the required impedance characteristics, which confirm the validity of the synthesis method.http://www.sciencedirect.com/science/article/pii/S2090123220301302Fractional-order impedanceFractional-order elementDistributed resistive-capacitive structureCircuit synthesis
spellingShingle Pyotr Arkhipovich Ushakov
Kirill Olegovich Maksimov
Stanislav Valerevich Stoychev
Vladimir Gennadievich Gravshin
David Kubanek
Jaroslav Koton
Synthesis of elements with fractional-order impedance based on homogenous distributed resistive-capacitive structures and genetic algorithm
Journal of Advanced Research
Fractional-order impedance
Fractional-order element
Distributed resistive-capacitive structure
Circuit synthesis
title Synthesis of elements with fractional-order impedance based on homogenous distributed resistive-capacitive structures and genetic algorithm
title_full Synthesis of elements with fractional-order impedance based on homogenous distributed resistive-capacitive structures and genetic algorithm
title_fullStr Synthesis of elements with fractional-order impedance based on homogenous distributed resistive-capacitive structures and genetic algorithm
title_full_unstemmed Synthesis of elements with fractional-order impedance based on homogenous distributed resistive-capacitive structures and genetic algorithm
title_short Synthesis of elements with fractional-order impedance based on homogenous distributed resistive-capacitive structures and genetic algorithm
title_sort synthesis of elements with fractional order impedance based on homogenous distributed resistive capacitive structures and genetic algorithm
topic Fractional-order impedance
Fractional-order element
Distributed resistive-capacitive structure
Circuit synthesis
url http://www.sciencedirect.com/science/article/pii/S2090123220301302
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