Stability of a tilt-controlling axial gap self-bearing motor with single-stator

Author:

UENO Satoshi1,ISEKI Ryo1,JIANG Changan1

Affiliation:

1. Department of Mechanical Engineering, College of Science and Engineering, Ritsumeikan University

Publisher

Japan Society of Mechanical Engineers

Subject

General Medicine

Reference14 articles.

1. Asama, J. and Chiba, A., Development of One-Axis Actively Regulated Bearingless Motor with a Repulsive Type Passive Magnetic Bearing, Proc. of The 2014 International Power Electronics Conference, Hiroshima, Japan, (2014), pp. 988-993.

2. Bauer, W. and Amrhein, W., Electrical Design and Winding Selection for a Bearingless Axial Force/Torque Motor, Proc. of International Symposium on Power Electronics Power Electronics, Electrical Drives, Automation and Motion, Sorrento, Italy, (2012), pp. 1224-1229.

3. Chiba, A., Fukao, T., Ichikawa, O., Oshima, M., Takemoto, M. and Dorrell, D.G., Magnetic Bearings and Bearingless Drives, ELSEVIER (2005).

4. Kurita, N., Ishikawa, T., Saito, N. and Masuzawa, T., Basic Design of the Maglev Pump for Total Artificial Heart by using Double Stator Type Axial Self-bearing Motor, Proc. of The 15th International Symposium on Magnetic Bearings, Kitakyushu, Japan, (2016), pp. 509-514.

5. Mitterhofer, H. and Jungmayr, G., Stability improvement of passively stabilized degrees of freedom in magnetically levitated systems, Proc. of The 15th International Symposium on Magnetic Bearings, Kitakyushu, Japan, (2016), pp. 701-708.

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