Design and validation of a multilevel voltage source inverter based on modular H-bridge cells

Generation, power conversion and subsequent integration of renewable energy generation systems, such as solar photovoltaic or wind, require an efficient power conversion system that can provide sufficient quality energy according to technical standards (e.g. IEEE 519–2022). In this context, this pap...

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Main Authors: Julio Pacher, Jorge Rodas, Alfredo Renault, Magno Ayala, Leonardo Comparatore, Raul Gregor
Format: Article
Language:English
Published: Elsevier 2023-09-01
Series:HardwareX
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2468067223000597
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author Julio Pacher
Jorge Rodas
Alfredo Renault
Magno Ayala
Leonardo Comparatore
Raul Gregor
author_facet Julio Pacher
Jorge Rodas
Alfredo Renault
Magno Ayala
Leonardo Comparatore
Raul Gregor
author_sort Julio Pacher
collection DOAJ
description Generation, power conversion and subsequent integration of renewable energy generation systems, such as solar photovoltaic or wind, require an efficient power conversion system that can provide sufficient quality energy according to technical standards (e.g. IEEE 519–2022). In this context, this paper focuses on the analysis, design and experimental validation of a multilevel voltage source inverter (VSI) scheme based on H-bridge cells with a modular and scalable structure for its application in power electronic converter circuits. The designed and assembled experimental setup is a versatile platform for testing experimentally varied control strategies and power converter configurations, such as the number of levels (3, 5, 7 levels) and phases (single-phase or three-phase). Therefore, the hardware design process proposed for the H-bridge cell and the measurement and conditioning circuits for voltage and current signals necessary for implementing the control algorithms are explained in detail. Moreover, a quantitative analysis of the operation of the design was carried out from measurements made with the experimental platform to verify its correct operation. Among the analysed parameters, the generated harmonics level stands out, quantified by calculating the total harmonic distortion and the mean square error between the reference signals and the measured values.
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spelling doaj.art-0e37c45ce3f143c497c966a900bba0682023-09-23T05:11:50ZengElsevierHardwareX2468-06722023-09-0115e00452Design and validation of a multilevel voltage source inverter based on modular H-bridge cellsJulio Pacher0Jorge Rodas1Alfredo Renault2Magno Ayala3Leonardo Comparatore4Raul Gregor5Corresponding author.; Laboratory of Power and Control Systems, Facultad de Ingeniería, Universidad Nacional de Asunción, ParaguayLaboratory of Power and Control Systems, Facultad de Ingeniería, Universidad Nacional de Asunción, ParaguayLaboratory of Power and Control Systems, Facultad de Ingeniería, Universidad Nacional de Asunción, ParaguayLaboratory of Power and Control Systems, Facultad de Ingeniería, Universidad Nacional de Asunción, ParaguayLaboratory of Power and Control Systems, Facultad de Ingeniería, Universidad Nacional de Asunción, ParaguayLaboratory of Power and Control Systems, Facultad de Ingeniería, Universidad Nacional de Asunción, ParaguayGeneration, power conversion and subsequent integration of renewable energy generation systems, such as solar photovoltaic or wind, require an efficient power conversion system that can provide sufficient quality energy according to technical standards (e.g. IEEE 519–2022). In this context, this paper focuses on the analysis, design and experimental validation of a multilevel voltage source inverter (VSI) scheme based on H-bridge cells with a modular and scalable structure for its application in power electronic converter circuits. The designed and assembled experimental setup is a versatile platform for testing experimentally varied control strategies and power converter configurations, such as the number of levels (3, 5, 7 levels) and phases (single-phase or three-phase). Therefore, the hardware design process proposed for the H-bridge cell and the measurement and conditioning circuits for voltage and current signals necessary for implementing the control algorithms are explained in detail. Moreover, a quantitative analysis of the operation of the design was carried out from measurements made with the experimental platform to verify its correct operation. Among the analysed parameters, the generated harmonics level stands out, quantified by calculating the total harmonic distortion and the mean square error between the reference signals and the measured values.http://www.sciencedirect.com/science/article/pii/S2468067223000597Model predictive controlModular H-bridgeMultilevel converterSiC-MosfetVoltage source inverterDC/AC converter
spellingShingle Julio Pacher
Jorge Rodas
Alfredo Renault
Magno Ayala
Leonardo Comparatore
Raul Gregor
Design and validation of a multilevel voltage source inverter based on modular H-bridge cells
HardwareX
Model predictive control
Modular H-bridge
Multilevel converter
SiC-Mosfet
Voltage source inverter
DC/AC converter
title Design and validation of a multilevel voltage source inverter based on modular H-bridge cells
title_full Design and validation of a multilevel voltage source inverter based on modular H-bridge cells
title_fullStr Design and validation of a multilevel voltage source inverter based on modular H-bridge cells
title_full_unstemmed Design and validation of a multilevel voltage source inverter based on modular H-bridge cells
title_short Design and validation of a multilevel voltage source inverter based on modular H-bridge cells
title_sort design and validation of a multilevel voltage source inverter based on modular h bridge cells
topic Model predictive control
Modular H-bridge
Multilevel converter
SiC-Mosfet
Voltage source inverter
DC/AC converter
url http://www.sciencedirect.com/science/article/pii/S2468067223000597
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