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Stability Analysis for a Flywheel Supported on Magnetic Bearings with Delayed Feedback Control

机译:时滞反馈控制的电磁轴承飞轮的稳定性分析

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摘要

In this paper, the model of the rotor dynamics of the flywheel is given using a rigid rotor supported on magnetic bearings. The phase lag of the control loop is modeled by a simple time delay. Limits of stability and the associated vibration frequencies are described in terms of nondimensional magnetic bearing stiffness and damping and nondimensional parameters of flywheel speed and time delay. Compared to the theoretical values, the simulation results and experimental measurements show the stability boundaries of the PD controller have the same qualitative tendencies.
机译:在本文中,飞轮的转子动力学模型是使用支撑在电磁轴承上的刚性转子给出的。通过简单的时间延迟对控制环路的相位滞后进行建模。根据无量纲的磁性轴承刚度,阻尼以及飞轮速度和时延的无量纲参数来描述稳定性和相关振动频率的极限。与理论值相比,仿真结果和实验测量表明PD控制器的稳定性边界具有相同的定性趋势。

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