Kim C., Park C., Shi Y., Steurer M., Pamidi S., Jin Z., Graber L., Cheetham P., Saha P.C., Goldman J., German B.
Ключевые слова: aviation application, propulsion system, cryogenic systems, power electronics, HTS, cables, modeling
Chen X., Steurer M., Huang X., Yuan W., Zhang M., Venuturumilli S., Elshiekh M., Ravindra H., Schoder K.
Chen X., Steurer M., Huang X., Yuan W., Zhang M., Venuturumilli S., Ravindra H., Schoder K., Soman R.
Ключевые слова: power equipment, SMES, HTS, transformers, economic analysis, review, conventional systems, comparison
Ключевые слова: power equipment, coated conductor modules, coils, FCL three-phase, test results, FCL inductive, HTS, REBCO, loop
Ключевые слова: HTS, YBCO, coated conductors, power equipment, FCL inductive, prototype, ac losses, shielding effects, experimental results, nitrogen gas, quench current
Ключевые слова: power equipment, FCL inductive, core iron, HTS, coated conductors, nitrogen liquid , impedance, modeling computational, loads, resistance, flux density, quench, current limiting characteristics, loop
Kvitkovic J., Usoskin A., Rutt A., Steurer M., Pamidi S., Schlenga K., Withnell T., Graber L., Chiocchio T.
Ключевые слова: FCL inductive, shields, HTS, YBCO, coated conductors, critical caracteristics, current-voltage characteristics, impedance, quench, joints, mechanical properties, recovery characteristics, IBAD process, PLD process, fabrication, deposition setup, critical current, magnetic field dependence, homogeneity, economic analysis, presentation
Selvamanickam V., Hazelton D., Langston J., Steurer M., Bogdan F., Llambes J.C., Majkic G., Kesign I., Duval J., Albertini M., Repnoy S., Hauer J., Crook D., Ranner S., Williams T., Coleman M.
Ключевые слова: HTS, YBCO, coated conductors, FCL resistive, quench, current limiting characteristics, modular system, cooling technology, critical caracteristics, current-voltage characteristics, recovery characteristics, loads, impedance, design parameters, power equipment, review, nitrogen sub-cooled
Selvamanickam V., Hazelton D., Langston J., Steurer M., Bogdan F., Majkic G., Kesgin I., Llambes J.H., Duval J., Albertini M., Repnoy S., Hauer J., Crook D., Ranner S., Williams T., Coleman M.
Selvamanickam V., Hazelton D., Langston J., Steurer M., Bogdan F., Llambes J.C., Majkic G., Kesgin I., Duval J., Albertini M., Repnoy S., Hauer J., Crook D., Ranner S., Williams T., Coleman M.
Ключевые слова: presentation, measurement setup, FCL, high voltage process, pulsed operation, cables, cryogenic systems, HTS, power equipment
Ключевые слова: FCL, review, design parameters, test results, power equipment, HTS, presentation, grid operation
Steurer M.(steurer@caps.fsu.edu), Noe M.(mathias.noe@itp.fzk.de)
Ключевые слова: HTS, FCL, review, power equipment, status
Ключевые слова: presentation, FCL resistive, FCL inductive, review, hybrid systems, HTS, YBCO, Bi2223, MgB2, power equipment
Ключевые слова: HTS, motors synchronous, test results, Bi2223, wires, measurement technique, shipboard applications, rotating machines, loop
Langston J., Steurer M., Woodruff S.(woodruff@caps.fsu.edu), Baldwin T., Tang J.(tang@@eng.fsu.edu)
Baldwin T.L., Steurer M., Liu Y.(yliu@caps.fsu.edu)
Ключевые слова: HTS, cables cold-dielectric, impedance, modeling, measurement technique, power equipment
Steurer M., Hui L.(hli@caps.fsu.edu), Cartes D.(dave@eng.fsu.edu), Haibin T.(tang@cs.fsu.edu)
Ключевые слова: SMES, control systems, numerical analysis, power equipment, power electronics
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