Practical one-shot data-driven design of fractional-order PID controller: Fictitious reference signal approach

Fuente: arXiv
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Autori principali: Yonezawa, Ansei, Yonezawa, Heisei, Yahagi, Shuichi, Kajiwara, Itsuro
Natura: Preprint
Pubblicazione: 2023
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author Yonezawa, Ansei
Yonezawa, Heisei
Yahagi, Shuichi
Kajiwara, Itsuro
author_facet Yonezawa, Ansei
Yonezawa, Heisei
Yahagi, Shuichi
Kajiwara, Itsuro
contents This study proposes a one-shot data-driven tuning method for a fractional-order proportional-integral-derivative (FOPID) controller. The proposed method tunes the FOPID controller in the model-reference control formulation. A loss function is defined to evaluate the match between a given reference model and the closed-loop response while explicitly considering the closed-loop stability. A loss function value is based on the fictitious reference signal computed using the input/output data. Model matching is achieved via loss function minimization. The proposed method is simple and practical: it needs only one-shot input/output data of a plant (no plant model required), considers the bounded-input bounded-output stability of the closed-loop system from a bounded reference input to a bounded output, and automatically determines the appropriate parameter value via optimization. Numerical simulations show that the proposed approach facilitates good control performance, and destabilization can be avoided even if perfect model matching is unachievable.
format Preprint
id arxiv_https___arxiv_org_abs_2311_05869
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Practical one-shot data-driven design of fractional-order PID controller: Fictitious reference signal approach
Yonezawa, Ansei
Yonezawa, Heisei
Yahagi, Shuichi
Kajiwara, Itsuro
Systems and Control
93C05, 26A33, 93C55
This study proposes a one-shot data-driven tuning method for a fractional-order proportional-integral-derivative (FOPID) controller. The proposed method tunes the FOPID controller in the model-reference control formulation. A loss function is defined to evaluate the match between a given reference model and the closed-loop response while explicitly considering the closed-loop stability. A loss function value is based on the fictitious reference signal computed using the input/output data. Model matching is achieved via loss function minimization. The proposed method is simple and practical: it needs only one-shot input/output data of a plant (no plant model required), considers the bounded-input bounded-output stability of the closed-loop system from a bounded reference input to a bounded output, and automatically determines the appropriate parameter value via optimization. Numerical simulations show that the proposed approach facilitates good control performance, and destabilization can be avoided even if perfect model matching is unachievable.
title Practical one-shot data-driven design of fractional-order PID controller: Fictitious reference signal approach
topic Systems and Control
93C05, 26A33, 93C55
url https://arxiv.org/abs/2311.05869