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首页> 外文期刊>IEEE Transactions on Industrial Electronics >Nutation and Precession Stability Criterion of Magnetically Suspended Rigid Rotors With Gyroscopic Effects Based on Positive and Negative Frequency Characteristics
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Nutation and Precession Stability Criterion of Magnetically Suspended Rigid Rotors With Gyroscopic Effects Based on Positive and Negative Frequency Characteristics

机译:基于正负频率特性的具有陀螺效应的磁悬浮刚性转子的动荡和进动稳定性判据

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摘要

For magnetically suspended rigid rotors with significant gyroscopic effects and high rotor speed, it is necessary to stabilize the forward whirling (nutation) and backward whirling (precession) modes. This paper derives the necessary and sufficient conditions for marginal stability of the whirling modes and further presents their absolute stability criterion based on the positive and negative frequency characteristics of the control channel. Then, the relative stability judging method of the nutation and precession modes is further developed, describing analytically the rotor speed margin, gain, and phase margins. The key advantage of the criterion is that it is independent from the rotational speed and it can reveal analytically the relationships between the rotor speed stability margins of the different whirling modes and the controller itself. Simulation and experimental results demonstrate the validity and superiority of the proposed stability criterion.
机译:对于具有显着陀螺效应和高转子速度的磁悬浮刚性转子,有必要稳定正向旋转(章动)和反向旋转(进动)模式。本文推导了旋转模式边缘稳定性的充要条件,并基于控制通道的正负频率特性提出了其绝对稳定性判据。然后,进一步发展了章动和进动模式的相对稳定性判断方法,分析地描述了转子速度裕度,增益和相位裕度。该标准的关键优势在于它与转速无关,并且可以分析地揭示不同回旋模式的转子速度稳定性裕度与控制器本身之间的关系。仿真和实验结果证明了所提出的稳定性判据的有效性和优越性。

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