DocumentCode
269941
Title
Isolated Double-Twin VSC Topology Using Three-Phase IPTs for High-Power Applications
Author
Laka, Aitor ; Andoni Barrena, Jon ; Chivite-Zabalza, Javier ; RodriÌguez Vidal, Miguel AÌngel ; Izurza-Moreno, Pedro
Author_Institution
Ingeteam Power Technol., S.A., Zamudio, Spain
Volume
29
Issue
11
fYear
2014
fDate
Nov. 2014
Firstpage
5761
Lastpage
5769
Abstract
This paper presents a voltage source converter (VSC) topology for high power applications. The presented topology combines four three-phase converters by using two three-phase coupled inductances or three-phase interphase transformers (IPTs). By using the three-phase IPTs in the proposed converter configuration, the number of magnetic elements is reduced comparing to other existing topologies that combine four three-phase converters. The output power of the proposed VSC is four times the power rating of each converter. Due to the use of three-phase IPTs the power is naturally balanced between the converters without any control action. Hence, the proposed VSC works as a single three-phase high power converter. In order to validate the good performance of the proposed VSC topology, it has been simulated using the simulation tool Saber and the results have been validated experimentally in a test bench of 80 kVA.
Keywords
inductance; power convertors; power transformers; apparent power 80 kVA; interphase transformer; isolated double twin VSC topology; power rating; three phase IPT; three phase coupled inductance; three-phase high power converter; voltage source converter; Capacitors; Integrated circuits; Power conversion; Power generation; Standards; Topology; Pulse-width modulation (PWM); voltage source converter (VSC);
fLanguage
English
Journal_Title
Power Electronics, IEEE Transactions on
Publisher
ieee
ISSN
0885-8993
Type
jour
DOI
10.1109/TPEL.2014.2301798
Filename
6718117
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