DocumentCode :
1070201
Title :
Design, Fabrication, and Test of a 5-kWh/100-kW Flywheel Energy Storage Utilizing a High-Temperature Superconducting Bearing
Author :
Strasik, M. ; Johnson, P.E. ; Day, A.C. ; Mittleider, J. ; Higgins, M.D. ; Edwards, J. ; Schindler, J.R. ; McCrary, K.E. ; McIver, C.R. ; Carlson, D. ; Gonder, J.F. ; Hull, J.R.
Author_Institution :
Boeing Co., Seattle
Volume :
17
Issue :
2
fYear :
2007
fDate :
6/1/2007 12:00:00 AM
Firstpage :
2133
Lastpage :
2137
Abstract :
The Boeing team has designed, fabricated, and is currently testing a 5-kWh/100-kW flywheel energy-storage system (FESS) utilizing a high-temperature superconducting (HTS) bearing suspension/damping system. Primary design features include: a robust rotor design utilizing a composite rim combined with a metallic hub to create a 164-kg rotor assembly without critical resonances within the normal operating range, a closed-loop passive HTS bearing suspension/damping system, and a brushless 100-kW motor/generator. The Boeing FESS provides true isolation for the critical load as the 3-phase 480-V AC input power is converted to 600-V DC and re-inverted to clean, 3-phase 480-V AC output power by the inverter power electronics. When fully charged, the system is capable of responding within 4 ms for the uninterruptible protection of critical digital loads. Low losses and stable operation were demonstrated at rotational speeds exceeding 15,000 rpm.
Keywords :
brushless machines; electric generators; flywheels; machine bearings; rotors; superconducting devices; suspensions (mechanical components); Boeing team; FESS; brushless motor-generator; closed-loop passive HTS bearing; flywheel energy storage system; high-temperature superconducting bearing; inverter power electronics; mass 164 kg; power 100 kW; rotor design; suspension-damping system; time 4 ms; voltage 480 V; voltage 600 V; Assembly systems; Damping; Energy storage; Fabrication; Flywheels; High temperature superconductors; Resonance; Robustness; Rotors; System testing; Bulk HTS; flywheel energy storage; magnetic levitation;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/TASC.2007.898065
Filename :
4277737
Link To Document :
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