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Stability analysis for a rotor system in a magnetically suspended control and sensitive gyroscope with the Lorentz force magnetic bearing rotation

机译:洛伦兹力磁轴承旋转的磁悬浮控制和灵敏陀螺仪中转子系统的稳定性分析

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摘要

In order to intuitively and conveniently analyse the stability of a rotor system in a magnetically suspended control and sensitive gyroscope with the rotation of a Lorentz force magnetic bearing, this study proposes a stability analysis method on the basis of a pseudo-linear equivalent transformation and extended double-frequency Bode diagram. The working principle of the rotor system is presented, and the dynamic model for this system that considers the Lorentz force magnetic bearing rotation is established. The established real-coefficient two-input-two-output nonlinear system is transferred into a complex-coefficient single-input-single-output nonlinear system through variable reconstruction. Based on the complex frequency shift characteristics of Laplace transformation, the time-varying nonlinear system is converted into a pseudo-linear system. In accordance with the relationship between a Nyquist curve and a Bode diagram, the extended double-frequency Bode diagram method is proposed to analyse the stability of a non-minimum phase system with integral items. Simulation and experimental results demonstrate the correctness of the proposed analysis method.
机译:为了直观,方便地分析带有Lorentz力磁轴承旋转的磁悬浮控制和灵敏陀螺仪中的转子系统的稳定性,本研究提出了一种基于伪线性等效变换并扩展的稳定性分析方法。双频伯德图。介绍了转子系统的工作原理,建立了考虑洛伦兹力电磁轴承旋转的系统动力学模型。通过变量重构将建立的实系数二输入二输出非线性系统转换为复系数单输入单输出非线性系统。基于拉普拉斯变换的复杂频移特性,将时变非线性系统转换为伪线性系统。根据奈奎斯特曲线和伯德图之间的关系,提出了扩展双频伯德图方法来分析具有积分项的非最小相位系统的稳定性。仿真和实验结果证明了所提出分析方法的正确性。

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