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EMTP Model of a Bidirectional Cascaded Multilevel Solid State Transformer for Distribution System Studies
by
Martinez-Velasco, Juan A.
, Adabi, Mohammad Ebrahim
, González-Molina, Francisco
, Martin-Arnedo, Jacinto
in
Bidirectional converter
/ Bridges
/ Distribució
/ Distribution system
/ Electric power distribution
/ Electrònica de potència
/ EMTP/ATP
/ Energia elèctrica
/ Energies
/ Enginyeria electrònica
/ Modular multilevel configuration
/ Power quality
/ Semiconductors
/ Solid state transformer
/ Tecnologia energètica
/ Àrees temàtiques de la UPC
2017
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EMTP Model of a Bidirectional Cascaded Multilevel Solid State Transformer for Distribution System Studies
by
Martinez-Velasco, Juan A.
, Adabi, Mohammad Ebrahim
, González-Molina, Francisco
, Martin-Arnedo, Jacinto
in
Bidirectional converter
/ Bridges
/ Distribució
/ Distribution system
/ Electric power distribution
/ Electrònica de potència
/ EMTP/ATP
/ Energia elèctrica
/ Energies
/ Enginyeria electrònica
/ Modular multilevel configuration
/ Power quality
/ Semiconductors
/ Solid state transformer
/ Tecnologia energètica
/ Àrees temàtiques de la UPC
2017
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EMTP Model of a Bidirectional Cascaded Multilevel Solid State Transformer for Distribution System Studies
by
Martinez-Velasco, Juan A.
, Adabi, Mohammad Ebrahim
, González-Molina, Francisco
, Martin-Arnedo, Jacinto
in
Bidirectional converter
/ Bridges
/ Distribució
/ Distribution system
/ Electric power distribution
/ Electrònica de potència
/ EMTP/ATP
/ Energia elèctrica
/ Energies
/ Enginyeria electrònica
/ Modular multilevel configuration
/ Power quality
/ Semiconductors
/ Solid state transformer
/ Tecnologia energètica
/ Àrees temàtiques de la UPC
2017
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EMTP Model of a Bidirectional Cascaded Multilevel Solid State Transformer for Distribution System Studies
Journal Article
EMTP Model of a Bidirectional Cascaded Multilevel Solid State Transformer for Distribution System Studies
2017
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Overview
This paper presents a time-domain model of a MV/LV bidirectional solid state transformer (SST). A multilevel converter configuration of the SST MV side is obtained by cascading a single-phase cell made of the series connection of an H bridge and a dual active bridge (dc-dc converter); the aim is to configure a realistic SST design suitable for MV levels. A three-phase four-wire converter has been used for the LV side, allowing the connection of both load/generation. The SST model, including the corresponding controllers, has been built and encapsulated as a custom-made model in the ATP version of the EMTP for application in distribution system studies. Several case studies have been carried out in order to evaluate the behavior of the proposed SST design under different operating conditions and check its impact on power quality.
Publisher
MDPI AG
Subject
MBRLCatalogueRelatedBooks
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