DocumentCode
87728
Title
Stator Winding Fault Influence on the Field Coil of a 10 MW Superconducting Synchronous Generator
Author
Sung-Jun Jung ; Gyeong-Hun Kim ; Hae-Jin Sung ; Kwangmin Kim ; Minwon Park ; In-Keun Yu ; Kwang Lok Kim ; Haigun Lee ; A-Rong Kim
Author_Institution
Dept. of Electr. Eng., Changwon Nat. Univ., Changwon, South Korea
Volume
23
Issue
3
fYear
2013
fDate
Jun-13
Firstpage
5200104
Lastpage
5200104
Abstract
It is important to analyze the transient characteristics of large synchronous generators according to the trend of the extension of wind turbines. The fabricated field coil of a synchronous generator using high-temperature superconducting (HTS) wire is somewhat influenced by the external magnetic field of the stator in a real environment. This paper describes the electromagnetic analysis of an HTS field coil of a 10-MW superconducting synchronous generator during stator winding faults. The real-time digital simulator is used to simulate a fault condition of the 10-MW SCSG. Also, the finite-element method is used in each operating condition, including normal and transient conditions, to analyze the influence of the HTS field coil. Based on the simulation results discussed here, there do not appear to be any significant problems regarding the electromagnetic operation of the HTS field coil during transient conditions of the stator. This paper will be used in the analysis of the transient characteristics of a large superconducting synchronous generator during stator winding faults.
Keywords
finite element analysis; high-temperature superconductors; stators; superconducting coils; synchronous generators; wind turbines; HTS field coil; electromagnetic analysis; external magnetic field; finite element method; high-temperature superconducting wire; power 10 MW; real time digital simulator; stator winding fault; superconducting synchronous generator; wind turbines; Coils; Generators; High temperature superconductors; Magnetic fields; Stator windings; Transient analysis; Fault currents; generators; high temperature superconductors; wind power generation;
fLanguage
English
Journal_Title
Applied Superconductivity, IEEE Transactions on
Publisher
ieee
ISSN
1051-8223
Type
jour
DOI
10.1109/TASC.2012.2232334
Filename
6376119
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