Active Magnetic Bearings Stiffness and Damping Identification from Frequency Characteristics of Control System

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Abstract

At present, the stiffness and damping identification for active magnetic bearings (AMBs) are still in the stage of theoretical analysis. The theoretical analysis indicates that if the mechanical structure and system parameters are determined, AMBs stiffness and damping are only related to frequency characteristic of control system, ignoring operating condition. More importantly, few verification methods are proposed. Considering the shortcomings of the theoretical identification, this paper obtains these coefficients from the experiment by using the magnetic bearing as a sine exciter. The identification results show that AMBs stiffness and damping have a great relationship with the control system and rotating speed. Specifically, at low rotating speed, the stiffness and damping can be obtained from the rotor static suspension by adding the same excitation frequency. However, at high speed, different from the static suspension situation, the AMBs supporting coefficients are not only related to the frequency characteristics of control system, but also related to the system operating conditions.

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Jin, C., Xu, Y., Zhou, J., & Cheng, C. (2016). Active Magnetic Bearings Stiffness and Damping Identification from Frequency Characteristics of Control System. Shock and Vibration, 2016. https://doi.org/10.1155/2016/1067506

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