Hybrid and Three-Level Three-Phase Rectifiers Using Interleaved DCM Boost Converters

Two new three-phase high-power-factor rectifiers using an interleaved discontinuous conduction mode (DCM) boost converters in a three-level configuration are proposed in this paper. The input currents waveforms follow the input voltages waveforms without a current control loop and the input currents...

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Main Authors: Marcelo Henrique Granza, Roger Gules, Carlos Henrique Illa Font
Format: Article
Language:English
Published: IEEE 2019-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8890736/
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spelling doaj-755f096bb18446738b79ad415180404a2021-03-30T00:41:33ZengIEEEIEEE Access2169-35362019-01-01716016816017610.1109/ACCESS.2019.29511238890736Hybrid and Three-Level Three-Phase Rectifiers Using Interleaved DCM Boost ConvertersMarcelo Henrique Granza0https://orcid.org/0000-0002-5492-4976Roger Gules1https://orcid.org/0000-0002-4037-9444Carlos Henrique Illa Font2https://orcid.org/0000-0002-8206-7617COMIN-GP, Universidade Tecnol&#x00F3;gica Federal do Paran&#x00E1; (UTFPR), Campus Guarapuava, Guarapuava, BrazilCPGEI, Universidade Tecnol&#x00F3;gica Federal do Paran&#x00E1; (UTFPR), Campus Curitiba, Curitiba, BrazilDAELE-PG, Universidade Tecnol&#x00F3;gica Federal do Paran&#x00E1; (UTFPR), Campus Ponta Grossa, Ponta Grossa, BrazilTwo new three-phase high-power-factor rectifiers using an interleaved discontinuous conduction mode (DCM) boost converters in a three-level configuration are proposed in this paper. The input currents waveforms follow the input voltages waveforms without a current control loop and the input currents present low current ripple without additional input filter due to the interleaved operation. The main advantage of the proposed rectifiers is the low voltage stress with the voltage applied across all semiconductors and output filter capacitors lower than the output voltage. A high gain rectifier version is presented in a hybrid configuration, including resonant voltage multiplier cell. The structures use only two active switches and current sensors and current control loops are not necessary, becoming a possible solution for low power and low cost applications. The low voltage stress operation and the reduction of the switch current stress due to the interleaved operation allows the reduction of the switches conduction losses of the DCM operation. The experimental results obtained from two prototypes are presented and efficiency equal to 97.26% is obtained for the three-level converter (V<sub>i</sub> = 127 V/P = 2 kW) and 94% for the hybrid configuration (V<sub>i</sub> = 64 V/P = 1 kW).https://ieeexplore.ieee.org/document/8890736/Power electronicsac-dc power converterswind energy generation
collection DOAJ
language English
format Article
sources DOAJ
author Marcelo Henrique Granza
Roger Gules
Carlos Henrique Illa Font
spellingShingle Marcelo Henrique Granza
Roger Gules
Carlos Henrique Illa Font
Hybrid and Three-Level Three-Phase Rectifiers Using Interleaved DCM Boost Converters
IEEE Access
Power electronics
ac-dc power converters
wind energy generation
author_facet Marcelo Henrique Granza
Roger Gules
Carlos Henrique Illa Font
author_sort Marcelo Henrique Granza
title Hybrid and Three-Level Three-Phase Rectifiers Using Interleaved DCM Boost Converters
title_short Hybrid and Three-Level Three-Phase Rectifiers Using Interleaved DCM Boost Converters
title_full Hybrid and Three-Level Three-Phase Rectifiers Using Interleaved DCM Boost Converters
title_fullStr Hybrid and Three-Level Three-Phase Rectifiers Using Interleaved DCM Boost Converters
title_full_unstemmed Hybrid and Three-Level Three-Phase Rectifiers Using Interleaved DCM Boost Converters
title_sort hybrid and three-level three-phase rectifiers using interleaved dcm boost converters
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2019-01-01
description Two new three-phase high-power-factor rectifiers using an interleaved discontinuous conduction mode (DCM) boost converters in a three-level configuration are proposed in this paper. The input currents waveforms follow the input voltages waveforms without a current control loop and the input currents present low current ripple without additional input filter due to the interleaved operation. The main advantage of the proposed rectifiers is the low voltage stress with the voltage applied across all semiconductors and output filter capacitors lower than the output voltage. A high gain rectifier version is presented in a hybrid configuration, including resonant voltage multiplier cell. The structures use only two active switches and current sensors and current control loops are not necessary, becoming a possible solution for low power and low cost applications. The low voltage stress operation and the reduction of the switch current stress due to the interleaved operation allows the reduction of the switches conduction losses of the DCM operation. The experimental results obtained from two prototypes are presented and efficiency equal to 97.26% is obtained for the three-level converter (V<sub>i</sub> = 127 V/P = 2 kW) and 94% for the hybrid configuration (V<sub>i</sub> = 64 V/P = 1 kW).
topic Power electronics
ac-dc power converters
wind energy generation
url https://ieeexplore.ieee.org/document/8890736/
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AT rogergules hybridandthreelevelthreephaserectifiersusinginterleaveddcmboostconverters
AT carloshenriqueillafont hybridandthreelevelthreephaserectifiersusinginterleaveddcmboostconverters
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