Title :
Optimal design of micro flywheel energy storage system
Author :
Yoo, S.Y. ; Lee, H.C. ; Noh, M.D.
Author_Institution :
BK21 Mechatron. Group, Chungnam Nat. Univ., Daejeon
Abstract :
We have designed a micro flywheel energy storage system in which the flywheel stores electrical energy in terms of kinetic energy and converts this kinetic energy into electrical energy when necessary. The flywheel is supported by two radial permanent magnet passive bearings. Permanent magnet passive bearings use the repulsive forces between two sets of permanent magnets so that contact free rotation is possible. A set of voice coil actuator provides the axial stability, resulting in a complete magnetic levitation. The toroidally-wound BLDC motor which has high efficiency and little additional negative radial stiffness is used for motoring and generation. Micro flywheel energy storage system is optimally designed to have the maximum energy storage capacity. In this paper, we present the design equation for the components in a micro flywheel energy storage system and the optimal design process for these components..
Keywords :
energy storage; flywheels; axial stability; electrical energy; kinetic energy; microflywheel energy storage system; negative radial stiffness; optimal design; radial permanent magnet passive bearings; repulsive forces; voice coil actuator; Actuators; Brushless DC motors; Coils; Contacts; Energy storage; Flywheels; Kinetic energy; Magnetic levitation; Permanent magnets; Stability; Flywheel Energy Storage System; Micro Flywheel; Permanent Magnet Bearing; Toroidally-wound BLDC motor; Voice Coil Actuator;
Conference_Titel :
Control, Automation and Systems, 2008. ICCAS 2008. International Conference on
Conference_Location :
Seoul
Print_ISBN :
978-89-950038-9-3
Electronic_ISBN :
978-89-93215-01-4
DOI :
10.1109/ICCAS.2008.4694691