Development of Lorentz Force Type Magnetic Bearing

Author:

Kurita Nobuyuki1,Ishikawa Takeo1,Okada Yohji2

Affiliation:

1. Gunma University

2. Ibaraki University

Abstract

Lead batteries are used mainly for energy storage. However they are using chemicals and heavy materials, which will affect to environment badly. Therefore, clean energy storage systems are under development using magnetic bearing. However, the eddy current causes serious rotational loss for energy storage flywheel. Therefore, Lorentz force type magnetic bearing is proposed. The rotating loss is expected to be negligible due to the constant flux in the airgap. To confirm the operation of proposed magnetic bearing, an experimental setup is fabricated and basic characteristics are tested. The rotor flywheel could run-up to 3000 min-1 with 0.65 mm maximum amplitude.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference9 articles.

1. Yahun Zhang, Kenzo Nonami, Hiromasa Higfsa, A feasibility study of 10MWh class energy storage flywheel system using superconducting magnetic bearing, Proceedings of 7th international symposium on magnetic bearings, pp.631-6362000.

2. Lawrence Hawkings Brian Murphy, Joseph Zierer, Richard Hayes, Shock and vibration testing of an AMB supported energy storage flywheel, Proceedings of 8th international symposium on magnetic bearings, pp.581-586, (2002).

3. Selim Sivrioglu, Kenzo Nonami, Atsushi Kubo, Ryouichi Takayama, Nonlinear adaptive control for a flywheel rotor-AMB system with unknown parameter, Proceedings of 8th international symposium on magnetic bearings, pp.593-598, (2002).

4. Brian Murphy, Hamid Ouroua, Matthew Caprio, John Herbst, Permanent magnet bias, homopolar magnetic bearing for a 130 kW-hr composite flywheel, Proceedings of 9th international symposium on magnetic bearings, 2004. (CD-rom).

5. Kenta Kuriyama, Budi Rachmanto, Kenzo Nonami, Attitude stabilization control of amb-flywheel supported by two-axes gimbals, Proceedings of 11th International Symposium on Magnetic Bearings, pp.526-532, (2008).

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