Practical Design of a 10 MW Superconducting Wind Power Generator Considering Weight Issue

Recently, gearless type generators, which have very low rotation speed and high torque, have been preferred over the geared type due to the problem of the gearbox reliability. In particular, a high-temperature superconducting generator is promising for wind power applications because of its advantag...

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Veröffentlicht in:IEEE transactions on applied superconductivity 2013-06, Vol.23 (3), p.5201805-5201805
Hauptverfasser: Sung, Hae-Jin, Kim, Gyeong-Hun, Kim, Kwangmin, Jung, Sung-Jun, Park, Minwon, Yu, In-Keun, Kim, Young-Gyun, Lee, Haigun, Kim, A.-Rong
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Sprache:eng
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Zusammenfassung:Recently, gearless type generators, which have very low rotation speed and high torque, have been preferred over the geared type due to the problem of the gearbox reliability. In particular, a high-temperature superconducting generator is promising for wind power applications because of its advantages of weight, size, and efficiency. In this paper, a 10-MW class superconducting wind power generator is designed using Y-Ba-Cu-O and Bi-Sr-Ca-Cu-O wires, and the weight of the superconducting generator is estimated. The finite elements method is used to analyze the magnetic field distribution, and the 3-D CAD program is used to calculate the weight of the super-conducting synchronous generator. The designed 10-MW class superconducting generator is analyzed and discussed considering the proper weight. The designed 10-MW superconducting generator will be effectively utilized in the construction of the 10-MW class wind power generation system.
ISSN:1051-8223
1558-2515
DOI:10.1109/TASC.2013.2245175