DocumentCode :
1837243
Title :
High-voltage high-frequency transformer design for a 7.2kV to 120V/240V 20kVA solid state transformer
Author :
Du, Yu ; Baek, Seunghun ; Bhattacharya, Subhashish ; Huang, Alex Q.
Author_Institution :
Dept. of Electr. & Comput. Eng., North Carolina State Univ., Raleigh, NC, USA
fYear :
2010
fDate :
7-10 Nov. 2010
Firstpage :
493
Lastpage :
498
Abstract :
Solid state transformer (SST) exhibits good features such as high power density, small volume and weight, controlled power factor, voltage sag ride through, etc. compared with traditional line frequency transformer. The 7.2 kV AC to 120V/240V AC 20 kVA solid state transformer is a key component of the future renewable electric energy delivery and management (FREEDM) systems as the interface between the 7.2 kV distribution grid and the low voltage residential micro-grid. Three cascaded 6.7 kVA high-voltage high-frequency transformers operating at 3 kHz are employed to convert voltage from 3800 V high voltage DC link of each cascaded stage to 400 V low voltage DC link. The transformer is required to withstand at least 15 kV high frequency voltage insulation continuously. Transformer magnetic core materials were reviewed and compared. Winding layout alternatives for leakage, magnetizing inductance and insulation were compared. An insulation strategy based on split core and separate winding structure with inserted insulation layer between the C cores was proposed. One 6.7 kVA high voltage high frequency transformer prototype was built and the test results were reported.
Keywords :
high-frequency transformers; magnetic cores; power grids; power transformer insulation; transformer windings; FREEDM; distribution grid; frequency 3 kHz; future renewable electric energy delivery and management; high frequency transformer design; high frequency voltage insulation; line frequency transformer; magnetizing inductance; residential micro-grid; solid state transformer; transformer magnetic core materials; voltage 120 V; voltage 240 V; voltage 3800 V; voltage 400 V; voltage 7.2 kV; voltage sag ride through; winding layout alternatives; Inductance; Oil insulation; Power transformer insulation; Transformer cores; Windings;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
IECON 2010 - 36th Annual Conference on IEEE Industrial Electronics Society
Conference_Location :
Glendale, AZ
ISSN :
1553-572X
Print_ISBN :
978-1-4244-5225-5
Electronic_ISBN :
1553-572X
Type :
conf
DOI :
10.1109/IECON.2010.5674828
Filename :
5674828
Link To Document :
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