Design of a Double-Half-Bridge Rectifier With Single-Stage and Power Decoupling

Several power decoupling techniques have been studied in the specialized literature to reduce or eliminate the ripple at 120 Hz intrinsic to the nature of single-phase AC-DC converters. Among these techniques are the active decoupling circuits, which insert new switches and passive elements in the c...

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Main Authors: Giovano Mayer, Alceu Andre Badin
Format: Article
Language:English
Published: IEEE 2023-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/10287937/
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author Giovano Mayer
Alceu Andre Badin
author_facet Giovano Mayer
Alceu Andre Badin
author_sort Giovano Mayer
collection DOAJ
description Several power decoupling techniques have been studied in the specialized literature to reduce or eliminate the ripple at 120 Hz intrinsic to the nature of single-phase AC-DC converters. Among these techniques are the active decoupling circuits, which insert new switches and passive elements in the circuit to increase costs and losses in the converters. The complete single stage (CSS) of power decoupling is defined in this study. The switches responsible for controlling the power factor in the proposed converter also control the output voltage and the ripple at 120 Hz using the phase-shift technique. Thus, lower-value capacitors can be used, allowing the replacement of the widely used electrolytic capacitors with film capacitors, which have a long useful life compared to the former. In addition, the proposed converter is isolated and has high efficiency. Simulation and experimental results are presented for a 1 kW prototype with an efficiency of up to 93%, showing that power decoupling is obtained, and the CSS topology definition can be incorporated into the literature.
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spelling doaj.art-90bf369a1da84faa9864abf716db7f9f2023-11-10T00:00:20ZengIEEEIEEE Access2169-35362023-01-011111750811751910.1109/ACCESS.2023.332613310287937Design of a Double-Half-Bridge Rectifier With Single-Stage and Power DecouplingGiovano Mayer0https://orcid.org/0000-0003-0556-4502Alceu Andre Badin1https://orcid.org/0000-0003-3243-4092Department of Electrical Engineering, Federal University of Technology—Paraná, Medianeira, BrazilDepartment of Electrical Engineering, Federal University of Technology—Paraná, Curitiba, BrazilSeveral power decoupling techniques have been studied in the specialized literature to reduce or eliminate the ripple at 120 Hz intrinsic to the nature of single-phase AC-DC converters. Among these techniques are the active decoupling circuits, which insert new switches and passive elements in the circuit to increase costs and losses in the converters. The complete single stage (CSS) of power decoupling is defined in this study. The switches responsible for controlling the power factor in the proposed converter also control the output voltage and the ripple at 120 Hz using the phase-shift technique. Thus, lower-value capacitors can be used, allowing the replacement of the widely used electrolytic capacitors with film capacitors, which have a long useful life compared to the former. In addition, the proposed converter is isolated and has high efficiency. Simulation and experimental results are presented for a 1 kW prototype with an efficiency of up to 93%, showing that power decoupling is obtained, and the CSS topology definition can be incorporated into the literature.https://ieeexplore.ieee.org/document/10287937/Single-phase AC–DC converterpower factor correctionintegrated power decouplingsingle-stage converterripple powerphase-shift control
spellingShingle Giovano Mayer
Alceu Andre Badin
Design of a Double-Half-Bridge Rectifier With Single-Stage and Power Decoupling
IEEE Access
Single-phase AC–DC converter
power factor correction
integrated power decoupling
single-stage converter
ripple power
phase-shift control
title Design of a Double-Half-Bridge Rectifier With Single-Stage and Power Decoupling
title_full Design of a Double-Half-Bridge Rectifier With Single-Stage and Power Decoupling
title_fullStr Design of a Double-Half-Bridge Rectifier With Single-Stage and Power Decoupling
title_full_unstemmed Design of a Double-Half-Bridge Rectifier With Single-Stage and Power Decoupling
title_short Design of a Double-Half-Bridge Rectifier With Single-Stage and Power Decoupling
title_sort design of a double half bridge rectifier with single stage and power decoupling
topic Single-phase AC–DC converter
power factor correction
integrated power decoupling
single-stage converter
ripple power
phase-shift control
url https://ieeexplore.ieee.org/document/10287937/
work_keys_str_mv AT giovanomayer designofadoublehalfbridgerectifierwithsinglestageandpowerdecoupling
AT alceuandrebadin designofadoublehalfbridgerectifierwithsinglestageandpowerdecoupling