Integrated Control and Modulation for Three-Level NPC Rectifiers
This paper uses a novel approach for the control of three-level neutral-point-clamped (NPC) rectifiers in order to tackle the capacitor voltage balance problem. A distinctive feature of the new control approach is that it is based on a model which is written in terms of the duty ratios for each phas...
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doaj-be6a56a4cc70408a9f58f010b4af54232020-11-25T02:12:17ZengMDPI AGEnergies1996-10732019-04-01129164110.3390/en12091641en12091641Integrated Control and Modulation for Three-Level NPC RectifiersAntonio Ventosa-Cutillas0Pablo Montero-Robina1Francisco Umbría2Federico Cuesta3Francisco Gordillo4Departamento de Sistemas y Automática, Escuela Técnica Superior de Ingeniería, Universidad de Sevilla, 41092 Sevilla, SpainDepartamento de Sistemas y Automática, Escuela Técnica Superior de Ingeniería, Universidad de Sevilla, 41092 Sevilla, SpainASM Assembly Systems GmbH & Co. KG, 81379 Munich, GermanyDepartamento de Sistemas y Automática, Escuela Técnica Superior de Ingeniería, Universidad de Sevilla, 41092 Sevilla, SpainDepartamento de Sistemas y Automática, Escuela Técnica Superior de Ingeniería, Universidad de Sevilla, 41092 Sevilla, SpainThis paper uses a novel approach for the control of three-level neutral-point-clamped (NPC) rectifiers in order to tackle the capacitor voltage balance problem. A distinctive feature of the new control approach is that it is based on a model which is written in terms of the duty ratios for each phase at each level. Hence, the system model presents nine duty cycle variables. Despite the fact that this formulation is different from the usual ones, it is shown that the control problem of currents and dc-link voltage can be formulated in a similar way to conventional methods. Furthermore, the control of the capacitor voltage balance can be expressed by means of equations that are decoupled from the currents and dc-link voltage dynamics, which results in a specific controller for the voltage balancing that does not affect the previous dynamics. A key point of the proposed approach is that part of the modulation stage is implicit in the formulation. Two particular controllers are compared in this paper. The first one fulfills the different control objectives at the expense of a large number of commutations. This problem is overcome in a new proposed controller, which presents similar performance and a satisfactory number of commutations. Experimental results are performed showing the effectiveness compared with a modified virtual space vector modulation with capacitor voltage balance capabilities.https://www.mdpi.com/1996-1073/12/9/1641synchronous rectifier applicationneutral-point-clamped (NPC) convertervoltage balancingintegrated control and modulation (ICM)Grid-connected power convertermultilevel converters |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Antonio Ventosa-Cutillas Pablo Montero-Robina Francisco Umbría Federico Cuesta Francisco Gordillo |
spellingShingle |
Antonio Ventosa-Cutillas Pablo Montero-Robina Francisco Umbría Federico Cuesta Francisco Gordillo Integrated Control and Modulation for Three-Level NPC Rectifiers Energies synchronous rectifier application neutral-point-clamped (NPC) converter voltage balancing integrated control and modulation (ICM) Grid-connected power converter multilevel converters |
author_facet |
Antonio Ventosa-Cutillas Pablo Montero-Robina Francisco Umbría Federico Cuesta Francisco Gordillo |
author_sort |
Antonio Ventosa-Cutillas |
title |
Integrated Control and Modulation for Three-Level NPC Rectifiers |
title_short |
Integrated Control and Modulation for Three-Level NPC Rectifiers |
title_full |
Integrated Control and Modulation for Three-Level NPC Rectifiers |
title_fullStr |
Integrated Control and Modulation for Three-Level NPC Rectifiers |
title_full_unstemmed |
Integrated Control and Modulation for Three-Level NPC Rectifiers |
title_sort |
integrated control and modulation for three-level npc rectifiers |
publisher |
MDPI AG |
series |
Energies |
issn |
1996-1073 |
publishDate |
2019-04-01 |
description |
This paper uses a novel approach for the control of three-level neutral-point-clamped (NPC) rectifiers in order to tackle the capacitor voltage balance problem. A distinctive feature of the new control approach is that it is based on a model which is written in terms of the duty ratios for each phase at each level. Hence, the system model presents nine duty cycle variables. Despite the fact that this formulation is different from the usual ones, it is shown that the control problem of currents and dc-link voltage can be formulated in a similar way to conventional methods. Furthermore, the control of the capacitor voltage balance can be expressed by means of equations that are decoupled from the currents and dc-link voltage dynamics, which results in a specific controller for the voltage balancing that does not affect the previous dynamics. A key point of the proposed approach is that part of the modulation stage is implicit in the formulation. Two particular controllers are compared in this paper. The first one fulfills the different control objectives at the expense of a large number of commutations. This problem is overcome in a new proposed controller, which presents similar performance and a satisfactory number of commutations. Experimental results are performed showing the effectiveness compared with a modified virtual space vector modulation with capacitor voltage balance capabilities. |
topic |
synchronous rectifier application neutral-point-clamped (NPC) converter voltage balancing integrated control and modulation (ICM) Grid-connected power converter multilevel converters |
url |
https://www.mdpi.com/1996-1073/12/9/1641 |
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