Study on Gyroscopic Effect of Magnetic Flywheel Rotor

Author:

Wen Xiang Long1,Cao Cao1

Affiliation:

1. Wuhan University of Technology

Abstract

In the high-speed, gyroscopic effects of the flywheel rotor greatly influence the rotor stability. The pole-zero points move to right of s-plane and the damping terms of the pole points become smaller. The stability of the system will get worse with the increasing of rotor speed when the traditional decentralized PD controller is used only. In the paper, a cross-feedback control with decentralized PD control is used for compensating gyroscopic effect. The simulation results show that the system stability is better using the cross-feedback control with decentralized PD control than using the traditional decentralized PD control.

Publisher

Trans Tech Publications, Ltd.

Reference8 articles.

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2. Ahrens M, Kucera L. Larsonneur R. Performance of a magnetically suspended flywheel energy storage device. IEEE Transactions on Control Systems Technology, Vol. 4 (1996), pp.494-502.

3. Zhang Pengbo, Zhang Qingrong, Fang Jiancheng. Stability of active bearing for control moment gyroscopic. Journal of Chinese Inertial Technology. Vol. 14 (2006), pp.47-54.

4. ShenYue, Sun Yanhua, Wang Shihu, Yu Lie. Reduction of Gyroscopic Effect of a Magnetic Bearing –Supported Flywheel System. Journal Of Xi'An Jiaotong University. Vol. 37 (2003). pp.1105-1110.

5. Kenta Kuriyama, Kenzo Nonami, Budi Rachmato. Modeling and Consideration of AMB- Flywheel Supported by Two-axis Gimbals . Journal of System Design and Dynamic Vol. 3 (2009), pp.681-693.

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