Detail publikace

Matrix pencil design approach towards fractional-order PI, PD and PID regulators

PETRŽELA, J.

Originální název

Matrix pencil design approach towards fractional-order PI, PD and PID regulators

Typ

článek ve sborníku ve WoS nebo Scopus

Jazyk

angličtina

Originální abstrakt

Synthesis method and its application leading to few derived network structures of the fractional-order PI controllers is proposed in this brief paper. It is based on algorithm originally developed for analysis of the linearized circuits widely known as matrix method of unknown nodal voltages (MMUNV); approach is only reversed. PIα, PDα regulators where α is a decimal-step fractions between zero and unity are discovered systematically by using prescribed voltage transfer function. Since MMUNV has significant degree of freedom derived networks are electronically reconfigurable. Approach leading to PID, PID, PI1-D as well as PID1- with single grounded constant phase element (CPE) is briefly discussed. Proposed concept is verified by considering few designed lumped analog circuits and verified by Orcad Pspice circuit simulations, both as time response to step signal and in the frequency domain. CPE as basic and required building block are implemented as two-terminal devices using known passive ladder topology. Frequency limitations of constructed controllers caused by valid approximation of CPE are mentioned; also in the context of parasitic properties of the active devices.

Klíčová slova

circuit synthesis; constant phase element; feedback regulators; matrix method; transfer function

Autoři

PETRŽELA, J.

Vydáno

19. 4. 2017

Místo

Brno, Czech Republic

ISBN

978-1-5090-4591-4

Kniha

Proceedings of 27th International Conference Radioelektronika 2017

Strany od

1

Strany do

4

Strany počet

4

BibTex

@inproceedings{BUT135854,
  author="Jiří {Petržela}",
  title="Matrix pencil design approach towards fractional-order PI, PD and PID regulators",
  booktitle="Proceedings of 27th International Conference Radioelektronika 2017",
  year="2017",
  pages="1--4",
  address="Brno, Czech Republic",
  doi="10.1109/RADIOELEK.2017.7936653",
  isbn="978-1-5090-4591-4"
}