A Building Block Method for Modeling and Small-Signal Stability Analysis of the Autonomous Microgrid Operation
The task of the whole microgrid state-space matrix creation is usually done in a preferred textual programming language, and it presents a complicated, time-consuming, and error-prone job for a researcher without good coding practices. To ease the modeling task, contribute to the adaptation of new m...
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doaj-a75e2fac7dd44fa59b5734e3215a337d2020-11-25T02:04:10ZengMDPI AGEnergies1996-10732020-03-01136149210.3390/en13061492en13061492A Building Block Method for Modeling and Small-Signal Stability Analysis of the Autonomous Microgrid OperationBojan Banković0Filip Filipović1Nebojša Mitrović2Milutin Petronijević3Vojkan Kostić4Department of Power Engineering, Faculty of Electronic Engineering, University of Niš, Aleksandra Medvedeva 14, 18115 Niš, SerbiaDepartment of Power Engineering, Faculty of Electronic Engineering, University of Niš, Aleksandra Medvedeva 14, 18115 Niš, SerbiaDepartment of Power Engineering, Faculty of Electronic Engineering, University of Niš, Aleksandra Medvedeva 14, 18115 Niš, SerbiaDepartment of Power Engineering, Faculty of Electronic Engineering, University of Niš, Aleksandra Medvedeva 14, 18115 Niš, SerbiaDepartment of Power Engineering, Faculty of Electronic Engineering, University of Niš, Aleksandra Medvedeva 14, 18115 Niš, SerbiaThe task of the whole microgrid state-space matrix creation is usually done in a preferred textual programming language, and it presents a complicated, time-consuming, and error-prone job for a researcher without good coding practices. To ease the modeling task, contribute to the adaptation of new microgrid structures, control algorithms, and devices, and to improve the flexibility of the model, a graphical element building block method is proposed in this paper. With the proposed approach model creation of the whole microgrid is reduced to the creation of the individual element state-space model that is linked with other elements in a logical way with a graphical connection. Elements are then grouped into meaningful wholes and encapsulated with the appropriate graphical user interface that enables easy parameter modification and model complexity change. More detailed DC/DC and DC/AC models of converters than those in the literature concerning microgrid stability are presented in this paper. Those converters are incorporated in a microgrid, whose model is created using the proposed approach in MATLAB/Simulink. The dynamic response examination of the model remains easy, just as with all Simulink models, while for the linear system analysis, a specialized toolbox is used.https://www.mdpi.com/1996-1073/13/6/1492microgrid modelingstability analysisstate-space modeling |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Bojan Banković Filip Filipović Nebojša Mitrović Milutin Petronijević Vojkan Kostić |
spellingShingle |
Bojan Banković Filip Filipović Nebojša Mitrović Milutin Petronijević Vojkan Kostić A Building Block Method for Modeling and Small-Signal Stability Analysis of the Autonomous Microgrid Operation Energies microgrid modeling stability analysis state-space modeling |
author_facet |
Bojan Banković Filip Filipović Nebojša Mitrović Milutin Petronijević Vojkan Kostić |
author_sort |
Bojan Banković |
title |
A Building Block Method for Modeling and Small-Signal Stability Analysis of the Autonomous Microgrid Operation |
title_short |
A Building Block Method for Modeling and Small-Signal Stability Analysis of the Autonomous Microgrid Operation |
title_full |
A Building Block Method for Modeling and Small-Signal Stability Analysis of the Autonomous Microgrid Operation |
title_fullStr |
A Building Block Method for Modeling and Small-Signal Stability Analysis of the Autonomous Microgrid Operation |
title_full_unstemmed |
A Building Block Method for Modeling and Small-Signal Stability Analysis of the Autonomous Microgrid Operation |
title_sort |
building block method for modeling and small-signal stability analysis of the autonomous microgrid operation |
publisher |
MDPI AG |
series |
Energies |
issn |
1996-1073 |
publishDate |
2020-03-01 |
description |
The task of the whole microgrid state-space matrix creation is usually done in a preferred textual programming language, and it presents a complicated, time-consuming, and error-prone job for a researcher without good coding practices. To ease the modeling task, contribute to the adaptation of new microgrid structures, control algorithms, and devices, and to improve the flexibility of the model, a graphical element building block method is proposed in this paper. With the proposed approach model creation of the whole microgrid is reduced to the creation of the individual element state-space model that is linked with other elements in a logical way with a graphical connection. Elements are then grouped into meaningful wholes and encapsulated with the appropriate graphical user interface that enables easy parameter modification and model complexity change. More detailed DC/DC and DC/AC models of converters than those in the literature concerning microgrid stability are presented in this paper. Those converters are incorporated in a microgrid, whose model is created using the proposed approach in MATLAB/Simulink. The dynamic response examination of the model remains easy, just as with all Simulink models, while for the linear system analysis, a specialized toolbox is used. |
topic |
microgrid modeling stability analysis state-space modeling |
url |
https://www.mdpi.com/1996-1073/13/6/1492 |
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