Wind Generators Test Bench. Optimal Design of PI Controller

This paper proposes a novel and robust strategy for the optimal design of the drive system integrated in a wind generators test bench. The PI regulator coefficients used in control systems are usually computed based on simplified hypotheses and then tuned manually so as the system response meet ce...

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Main Authors: TUDORACHE, T., BOSTAN, V.
Format: Article
Language:English
Published: Stefan cel Mare University of Suceava 2011-08-01
Series:Advances in Electrical and Computer Engineering
Subjects:
Online Access:http://dx.doi.org/10.4316/AECE.2011.03011
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author TUDORACHE, T.
BOSTAN, V.
author_facet TUDORACHE, T.
BOSTAN, V.
author_sort TUDORACHE, T.
collection DOAJ
description This paper proposes a novel and robust strategy for the optimal design of the drive system integrated in a wind generators test bench. The PI regulator coefficients used in control systems are usually computed based on simplified hypotheses and then tuned manually so as the system response meet certain specifications in terms of stability, accuracy and speed. The proposed methodology permits the automatic identification of PI regulator coefficients using intelligent optimization algorithms, the initial guess for the search procedure being determined based on particular simplified hypotheses. The proposed procedure can help the design engineers to drastically reduce the effort for finding the best PI regulator coefficients offering a range of feasible solutions depending on the imposed optimum criteria. The characteristics and performances of the optimization strategy are highlighted by using it for the design of a DC motor drive system used to simulate the wind prime mover integrated in a wind generators test bench.
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spelling doaj.art-a7ea1c086a994a89a5226482e2062ec32022-12-21T18:21:41ZengStefan cel Mare University of SuceavaAdvances in Electrical and Computer Engineering1582-74451844-76002011-08-01113657010.4316/AECE.2011.03011Wind Generators Test Bench. Optimal Design of PI ControllerTUDORACHE, T.BOSTAN, V.This paper proposes a novel and robust strategy for the optimal design of the drive system integrated in a wind generators test bench. The PI regulator coefficients used in control systems are usually computed based on simplified hypotheses and then tuned manually so as the system response meet certain specifications in terms of stability, accuracy and speed. The proposed methodology permits the automatic identification of PI regulator coefficients using intelligent optimization algorithms, the initial guess for the search procedure being determined based on particular simplified hypotheses. The proposed procedure can help the design engineers to drastically reduce the effort for finding the best PI regulator coefficients offering a range of feasible solutions depending on the imposed optimum criteria. The characteristics and performances of the optimization strategy are highlighted by using it for the design of a DC motor drive system used to simulate the wind prime mover integrated in a wind generators test bench.http://dx.doi.org/10.4316/AECE.2011.03011numerical simulationoptimizationtest bench of wind generators
spellingShingle TUDORACHE, T.
BOSTAN, V.
Wind Generators Test Bench. Optimal Design of PI Controller
Advances in Electrical and Computer Engineering
numerical simulation
optimization
test bench of wind generators
title Wind Generators Test Bench. Optimal Design of PI Controller
title_full Wind Generators Test Bench. Optimal Design of PI Controller
title_fullStr Wind Generators Test Bench. Optimal Design of PI Controller
title_full_unstemmed Wind Generators Test Bench. Optimal Design of PI Controller
title_short Wind Generators Test Bench. Optimal Design of PI Controller
title_sort wind generators test bench optimal design of pi controller
topic numerical simulation
optimization
test bench of wind generators
url http://dx.doi.org/10.4316/AECE.2011.03011
work_keys_str_mv AT tudorachet windgeneratorstestbenchoptimaldesignofpicontroller
AT bostanv windgeneratorstestbenchoptimaldesignofpicontroller