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DVOŘÁK, J.; JEŘÁBEK, J.; POLEŠÁKOVÁ, Z.; KUBÁNEK, D.; BLAŽEK, P.
Original Title
Multifunctional Electronically Reconfigurable and Tunable Fractional-Order Filter
English Title
Type
WoS Article
Original Abstract
In this paper the authors present a multifunctional reconfigurable fractional-order filter performing a low-pass, high-pass, band-pass and band-reject transfer function. The filter is based on two types of active elements, OTA (Operational Transconductance Amplifier) and ACA (Adjustable Current Amplifier). It provides pole frequency control, depending on the values of the transconductance of the OTA elements. The quality factor is also electronically controlled, depending on the amplification of the ACA element. The order of the filter can be changed by switching the fractional-order capacitor having various values of the order. The circuit was implemented as a PCB (Printed Circuit Board) and measured in laboratory conditions. Measurement results are compared with the simulation results. The behavioural models were used for the purpose of the simulation.
English abstract
Keywords
fractional-order element; analogue filter; quality factor control; pole frequency control; DACA; OTA
Key words in English
Authors
RIV year
2019
Released
11.02.2019
Publisher
Kaunas University of Technology
Location
Kaunas, Litva
ISBN
1392-1215
Periodical
Elektronika Ir Elektrotechnika
Volume
25
Number
1
State
Republic of Lithuania
Pages from
26
Pages to
30
Pages count
5
URL
http://eejournal.ktu.lt/index.php/elt/article/view/22732
Full text in the Digital Library
http://hdl.handle.net/11012/184632
BibTex
@article{BUT146595, author="Jan {Dvořák} and Jan {Jeřábek} and Zuzana {Bečková} and David {Kubánek} and Petr {Blažek}", title="Multifunctional Electronically Reconfigurable and Tunable Fractional-Order Filter", journal="Elektronika Ir Elektrotechnika", year="2019", volume="25", number="1", pages="26--30", doi="10.5755/j01.eie.25.1.22732", issn="1392-1215", url="http://eejournal.ktu.lt/index.php/elt/article/view/22732" }
Documents
Dvorak_ELECTRONICS_2018_final_litva22732-Article Text-69828-1-10-20190212