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  4. DC-DC Converter based on the Asymmetric Multistage Stacked Boost Architecture with Feed-Forward Control for Photovoltaic Plants
 
conference paper not in proceedings

DC-DC Converter based on the Asymmetric Multistage Stacked Boost Architecture with Feed-Forward Control for Photovoltaic Plants

Mademlis, Georgios
•
Steinke, Gina Kristin  
•
Rufer, Alfred  
2016
PCIM 2016 : International Exhibition and Conference for Power Electronics, Intelligent Motion, Renewable Energy and Energy Management

A new feed-forward control technique for a DC-DC step-up converter based on the asymmet-ric Multistage Stacked Boost Architecture (MSBA) is presented in this paper. The proposed closed loop control scheme can provide improved accuracy in the steady-state operation and high dynamic performance. The asymmetric MSBA converter is a single output high-voltage DC-DC step-up converter that comprises several in-series connected capacitors with active voltage balancing circuits. The converter can attain high voltage ratios and thus, it is a suita-ble solution for the high voltage transmission requirements of the large photovoltaic (PV) plants. Selective simulation and experimental results are presented in order to validate the effectiveness and the operational improvements of the proposed control system.

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Type
conference paper not in proceedings
Author(s)
Mademlis, Georgios
Steinke, Gina Kristin  
Rufer, Alfred  
Date Issued

2016

ISBN of the book

978-3-8007-4186-1

Subjects

DC-DC power conversion

•

Feedforward systems

•

asymmetric Multistage Stacked Boost Architecture (MSBA)

•

non-isolated boost

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LEI  
Event nameEvent placeEvent date
PCIM 2016 : International Exhibition and Conference for Power Electronics, Intelligent Motion, Renewable Energy and Energy Management

Nuremberg, Germany

10-12 May 2016

Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/126183
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