DocumentCode
1765010
Title
Tests and Performance Analysis of 2G HTS Transformer
Author
Wojtasiewicz, Grzegorz ; Janowski, Tadeusz ; Kozak, Slawomir ; Kozak, Janusz ; Majka, Michal ; Kondratowicz-Kucewicz, B.
Author_Institution
Electrotech. Inst., Warsaw, Poland
Volume
23
Issue
3
fYear
2013
fDate
41426
Firstpage
5500505
Lastpage
5500505
Abstract
Transformers represent one of the oldest and most mature elements in a power transmission and distribution network. The new superconducting transformers are smaller and lighter than conventional ones and they have lower power losses. Also, the new 2G superconducting tapes with high resistivity in the normal state allow to build transformers with high short-circuit strength. The short-circuit current limiting feature of the superconducting transformer, which is the most important benefit of replacing conventional windings by superconducting ones, provides protection and significantly reduces the wear and tear of circuit breakers and other substation power equipment. This paper describes the design and test results of a model of a 1-phase, 8.8 kVA superconducting transformer with windings made of 2G HTS tape. The authors also present the results of a numerical analysis of the design. A special regard is given to the ability of the device´s superconducting winding to limit the short-circuit current, in particular its resistivity in normal state at a temperature of 77 K.
Keywords
numerical analysis; short-circuit currents; superconducting tapes; superconducting transformers; transformer windings; 2G HTS tape; 2G HTS transformer; 2G superconducting tapes; apparent power 8.8 kVA; circuit breakers; distribution network; numerical analysis; power losses; power transmission; short-circuit current limiting feature; short-circuit strength; substation power equipment; superconducting transformers; superconducting winding; Fault currents; High temperature superconductors; Impedance; Resistance; Superconducting films; Superconducting transmission lines; Windings; 2G HTS tapes; fault current limitation; superconducting transformer;
fLanguage
English
Journal_Title
Applied Superconductivity, IEEE Transactions on
Publisher
ieee
ISSN
1051-8223
Type
jour
DOI
10.1109/TASC.2012.2234315
Filename
6392209
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