DocumentCode :
37148
Title :
A DC–DC Multiport-Converter-Based Solid-State Transformer Integrating Distributed Generation and Storage
Author :
Falcones, Sixifo ; Ayyanar, Rajapandian ; Mao, Xiaolin
Author_Institution :
Escuela Super. Politec. del Guayaquil, Guayaquil, Ecuador
Volume :
28
Issue :
5
fYear :
2013
fDate :
May-13
Firstpage :
2192
Lastpage :
2203
Abstract :
The Solid-state transformer (SST) has been proposed by researchers to replace the regular distribution transformer in the future smart grid. The SST provides ports for the integration of storage and distributed generation (DG), e.g., photovoltaic (PV), and enables the implementation of power quality features. This paper proposes a SST topology based on a quad-active-bridge (QAB) converter which not only provides isolation for the load, but also for DG and storage. A gyrator-based average model is developed for a general multiactive-bridge (MAB) converter, and expressions to determine the power rating of the MAB ports are derived. These results are then applied to analyze the QAB converter. For the control of the dc-dc stage of the proposed QAB-based SST integrating PV and battery, a technique that accounts for the cross-coupling characteristics of the QAB converter in order to improve the regulation of the high-voltage-dc link is introduced. This is done by transferring the disturbances onto the battery. The control loops are designed using single-input single-output techniques with different bandwidths. The dynamic performance of the control strategy is verified through extensive simulation and experimental results.
Keywords :
DC-DC power convertors; distributed power generation; gyrators; transformers; DC-DC multiport-converter; DG; MAB converter; PV generation; QAB converter; SST topology; cross-coupling char- acteristics; general multiactive-bridge converter; gyrator-based average model; high-voltage-DC link; photovoltaic generation; power quality features; power rating; quad-active-bridge converter; single-input single-output techniques; smart grid; solid-state transformer integrating distributed generation; Distributed power generation; Educational institutions; Hafnium; Inductance; Inductors; Mathematical model; Topology; DC–DC converter; distributed generation; multiport converter; smart grid; solid-state transformer;
fLanguage :
English
Journal_Title :
Power Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8993
Type :
jour
DOI :
10.1109/TPEL.2012.2215965
Filename :
6290413
Link To Document :
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