Struktura obiektu
Autor:

Bingi, Kishore ; Ibrahim, Rosdiazli ; Karsiti, Mohd Noh ; Hassam,Sabo Miya ; Harindran, Vivekananda Rajah

Współtwórca:

Kobusińska, Anna - ed. ; Hsu, Ching-Hsien - ed. ; Lin, Kwei-Jay - ed.

Tytuł:

Frequency response based curve fitting approximation of fractional-order PID controllers

Podtytuł:

.

Tytuł publikacji grupowej:

AMCS, volume 29 (2019)

Temat i słowa kluczowe:

curve fitting ; fractional-order PID controller ; Frequency Response Function ; integer-order approximation ; Oustaloup approximation ; Matsuda approximation

Abstract:

Fractional-order PID (FOPID) controllers have been used extensively in many control applications to achieve robust control performance. To implement these controllers, curve fitting approximation techniques are widely employed to obtain integer-order approximation of FOPID. The most popular and widely used approximation techniques include the Oustaloup, Matsuda and Cheraff approaches. However, these methods are unable to achieve the best approximation due to the limitation in the desired frequency range. ; Thus, this paper proposes a simple curve fitting based integer-order approximation method for a fractional-order integrator/differentiator using frequency response. The advantage of this technique is that it is simple and can fit the entire desired frequency range. Simulation results in the frequency domain show that the proposed approach produces better parameter approximation for the desired frequency range compared with the Oustaloup, refined Oustaloup and Matsuda techniques. Furthermore, time domain and stability analyses also validate the frequency domain results.

Wydawca:

Zielona Góra: Uniwersytet Zielonogórski

Data wydania:

2019

Typ zasobu:

artykuł

DOI:

10.2478/amcs-2019-0023

Strony:

311-326

Źródło:

AMCS, volume 29, number 2 (2019) ; kliknij tutaj, żeby przejść

Jezyk:

eng

Licencja CC BY 4.0:

kliknij tutaj, żeby przejść

Prawa do dysponowania publikacją:

Biblioteka Uniwersytetu Zielonogórskiego

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