|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
Design of magnetically levitated rotors in a large flywheel energy storage system from a stability standpoint Seong-yeol Yoo/Wook-ryun Lee/Yong-chae Bae/Myounggyu Noh
The Journal of Mechanical Science and Technology, vol. 24, no. 1, pp.231-235, 2010
Abstract : The stability of flywheels in an energy storage system supported by active magnetic bearings (AMBs) is studied in this paper. We designed
and built two flywheel energy storage systems (FESS) that can store up to 5 kWh of usable energy at a maximum speed of 18,000
rpm. One is optimized to store as much energy as possible, resulting in a flywheel with a strong gyroscopic coupling. The other has a
much smaller gyroscopic coupling for ease of control. To analyze the stability of the system accurately, we derived the dynamic models
of the rotor using finite-element method and integrated them with the models of the bearings, amplifiers, and sensors to obtain the simulation
model of the system. We validated the model through experiments and compared the stability of these two systems.
Keyword :
Flywheel energy storage system; Active magnetic bearing; Stability; Flexible rotor model; Reduced-order model
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
JMST Editorial Office: #702 KSTC New Bldg, 22 7-gil, Teheran-ro, Gangnam-gu, Seoul 06130, Korea
TEL: +82-2-501-3605, E-mail: editorial@j-mst.org |
JMST Production Office: #702 KSTC New Bldg, 22 7-gil, Teheran-ro, Gangnam-gu, Seoul 06130, Korea
TEL: +82-2-501-6056, FAX: +82-2-501-3649, E-mail: editorial@j-mst.org |
|
|
|
|