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  4. Active Power Decoupling for Single-Phase Input-Series-Output-Parallel Solid-State Transformers
 
research article

Active Power Decoupling for Single-Phase Input-Series-Output-Parallel Solid-State Transformers

Wei, Tianyu  
•
Cervone, Andrea  
•
Dujic, Drazen  
2024
IEEE Transactions on Power Electronics

Solid-state transformers with input-series outputparallel structures are being considered for a variety of applications requiring MVAC to LVDC conversion. Due to the singlephase AC/DC conversion at the input side, all floating cells of the solid-state transformer suffer from the well-known second harmonic pulsating power. Large DC link capacitors are typically employed to smooth the ripple voltage created by the pulsating power, which leads to low power density. An alternative solution is to adopt active power decoupling technology, which can buffer the pulsating power in separate energy storage components. This paper investigates the feasibility and potential benefit of applying active power decoupling to single-phase input-series output-parallel solid-state transformers. The buck-type active power filter is selected, and the design of a prototype is presented. Simulation and experimental results show that a significantly lower second harmonic ripple voltage is achieved with active power filters and very small DC link capacitance.

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Type
research article
DOI
10.1109/TPEL.2024.3351618
Author(s)
Wei, Tianyu  
Cervone, Andrea  
Dujic, Drazen  
Date Issued

2024

Published in
IEEE Transactions on Power Electronics
Start page

1

End page

13

Subjects

active power decoupling

•

active power filter

•

solid-state transformer

•

input-series output-parallel

•

second harmonic ripple voltage suppression

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

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January 10, 2024
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/202838
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