Evaluation of Cross-Coupling Decoupling in Islanded Microgrid Control with Inductor Current Feed-Forward Technique

To control the voltage source inverter in an islanded microgrid, the d-q reference frame is employed chiefly because of its ability to model inverter's dynamic models accurately. It allows the use of a simple proportional-integral controller for control purposes. However, its use is plagued wi...

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Main Authors: Sunday Olayanju, Folasade Mojisola Dahunsi, Akinlolu Adediran Ponnle
Format: Article
Language:English
Published: Departement of Electrical Engineering, Faculty of Engineering, Universitas Brawijaya 2024-12-01
Series:Jurnal EECCIS (Electrics, Electronics, Communications, Controls, Informatics, Systems)
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Online Access:https://jurnaleeccis.ub.ac.id/index.php/eeccis/article/view/1740
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author Sunday Olayanju
Folasade Mojisola Dahunsi
Akinlolu Adediran Ponnle
author_facet Sunday Olayanju
Folasade Mojisola Dahunsi
Akinlolu Adediran Ponnle
author_sort Sunday Olayanju
collection DOAJ
description To control the voltage source inverter in an islanded microgrid, the d-q reference frame is employed chiefly because of its ability to model inverter's dynamic models accurately. It allows the use of a simple proportional-integral controller for control purposes. However, its use is plagued with the cross-coupling terms introduced by the transformation into the d-q frame in the inner current and outside voltage control loops. This paper presents stepwise design and modelling of the inverter dynamics in the d-q reference frame. The systematic algebraic elimination method with inductor current feed-forward was employed for decoupling cross-coupling terms in the current and voltage loop controller design. The method's effectiveness was evaluated in the voltage and current control; overshoots and distortions resulting from load change were better mitigated. Simulation results were presented for evaluating the controller performance in cross coupling terms.
format Article
id doaj-art-d5ef9e1709794b25a2ca8fa7ce2669de
institution Kabale University
issn 2460-8122
language English
publishDate 2024-12-01
publisher Departement of Electrical Engineering, Faculty of Engineering, Universitas Brawijaya
record_format Article
series Jurnal EECCIS (Electrics, Electronics, Communications, Controls, Informatics, Systems)
spelling doaj-art-d5ef9e1709794b25a2ca8fa7ce2669de2025-01-20T14:56:19ZengDepartement of Electrical Engineering, Faculty of Engineering, Universitas BrawijayaJurnal EECCIS (Electrics, Electronics, Communications, Controls, Informatics, Systems)2460-81222024-12-0118310.21776/jeeccis.v18i3.17402173Evaluation of Cross-Coupling Decoupling in Islanded Microgrid Control with Inductor Current Feed-Forward TechniqueSunday Olayanju0Folasade Mojisola Dahunsi1Akinlolu Adediran Ponnle2University of Ilorin, Ilorin Kwara StateComputer Engineering Department, The Federal University of Technology, Akure, NigeriaElectrical and Electronics Engineering Department, The Federal University of Technology Akure, Nigeria To control the voltage source inverter in an islanded microgrid, the d-q reference frame is employed chiefly because of its ability to model inverter's dynamic models accurately. It allows the use of a simple proportional-integral controller for control purposes. However, its use is plagued with the cross-coupling terms introduced by the transformation into the d-q frame in the inner current and outside voltage control loops. This paper presents stepwise design and modelling of the inverter dynamics in the d-q reference frame. The systematic algebraic elimination method with inductor current feed-forward was employed for decoupling cross-coupling terms in the current and voltage loop controller design. The method's effectiveness was evaluated in the voltage and current control; overshoots and distortions resulting from load change were better mitigated. Simulation results were presented for evaluating the controller performance in cross coupling terms. https://jurnaleeccis.ub.ac.id/index.php/eeccis/article/view/1740voltage source inverterd-q reference framecontrol loopcross-couplingmicrogrid
spellingShingle Sunday Olayanju
Folasade Mojisola Dahunsi
Akinlolu Adediran Ponnle
Evaluation of Cross-Coupling Decoupling in Islanded Microgrid Control with Inductor Current Feed-Forward Technique
Jurnal EECCIS (Electrics, Electronics, Communications, Controls, Informatics, Systems)
voltage source inverter
d-q reference frame
control loop
cross-coupling
microgrid
title Evaluation of Cross-Coupling Decoupling in Islanded Microgrid Control with Inductor Current Feed-Forward Technique
title_full Evaluation of Cross-Coupling Decoupling in Islanded Microgrid Control with Inductor Current Feed-Forward Technique
title_fullStr Evaluation of Cross-Coupling Decoupling in Islanded Microgrid Control with Inductor Current Feed-Forward Technique
title_full_unstemmed Evaluation of Cross-Coupling Decoupling in Islanded Microgrid Control with Inductor Current Feed-Forward Technique
title_short Evaluation of Cross-Coupling Decoupling in Islanded Microgrid Control with Inductor Current Feed-Forward Technique
title_sort evaluation of cross coupling decoupling in islanded microgrid control with inductor current feed forward technique
topic voltage source inverter
d-q reference frame
control loop
cross-coupling
microgrid
url https://jurnaleeccis.ub.ac.id/index.php/eeccis/article/view/1740
work_keys_str_mv AT sundayolayanju evaluationofcrosscouplingdecouplinginislandedmicrogridcontrolwithinductorcurrentfeedforwardtechnique
AT folasademojisoladahunsi evaluationofcrosscouplingdecouplinginislandedmicrogridcontrolwithinductorcurrentfeedforwardtechnique
AT akinloluadediranponnle evaluationofcrosscouplingdecouplinginislandedmicrogridcontrolwithinductorcurrentfeedforwardtechnique