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JEŘÁBEK, J. ŠOTNER, R. DVOŘÁK, J. LANGHAMMER, L. KOTON, J.
Original Title
Fractional-Order High-Pass Filter with Electronically Adjustable Parameters
Type
conference paper
Language
English
Original Abstract
This paper presents possible solution of fractional-order high-pass filter (FHPF) with electronically adjustable order between 1 and 2 and also with electronically adjustable pole frequency. It is based on well-known Follow-the-Leader Feedback (FLF) topology adjusted for utilization with operational transconductance amplifiers (OTAs) and adjustable current amplifiers (ACAs). This 3rd-order topology is used in order to approximate FHPF response in particular frequency band of interest. Design is supported by Pspice simulations for three particular values of the filter’s order (1.25, 1.5, 1.75) and for several values of pole frequency. Moreover, simulation results with two different approximations are compared.
Keywords
adjustable current amplifier, approximation, ACA, FHPF, FLF, follow-the-leader feedback, fractional-order, operational transconductance amplifier
Authors
JEŘÁBEK, J.; ŠOTNER, R.; DVOŘÁK, J.; LANGHAMMER, L.; KOTON, J.
Released
6. 9. 2016
Publisher
University of West Bohemia
Location
Pilsen
ISBN
978-80-261-0602-9
Book
21st 2016 International Conference on Applied Electronics
1803-7232
Periodical
International Conference on Applied Electronics
State
unknown
Pages from
111
Pages to
116
Pages count
6
URL
https://ieeexplore.ieee.org/document/7577253
BibTex
@inproceedings{BUT127784, author="Jan {Jeřábek} and Roman {Šotner} and Jan {Dvořák} and Lukáš {Langhammer} and Jaroslav {Koton}", title="Fractional-Order High-Pass Filter with Electronically Adjustable Parameters", booktitle="21st 2016 International Conference on Applied Electronics", year="2016", journal="International Conference on Applied Electronics", pages="111--116", publisher="University of West Bohemia", address="Pilsen", doi="10.1109/AE.2016.7577253", isbn="978-80-261-0602-9", issn="1803-7232", url="https://ieeexplore.ieee.org/document/7577253" }