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首页> 外文期刊>Mechatronics, IEEE/ASME Transactions on >An Active Magnetic Bearing for Thin-Walled Rotors: Vibrational Dynamics and Stabilizing Control
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An Active Magnetic Bearing for Thin-Walled Rotors: Vibrational Dynamics and Stabilizing Control

机译:薄壁转子的有源电磁轴承:振动动力学和稳定控制

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摘要

This paper describes a novel active magnetic bearing with distributed actuation, designed for contact-free support of a thin-walled rotor. A full-dynamic analysis, control formulation, and experimental evaluation are presented. Important aspects of the bearing operation include the vibration excitation of the rotor wall due to asymmetries in manufacture and assembly, and the limits of stable operation with respect to static loading of the bearing. For the proposed design, the vibratory dynamics for flexure of the rotor wall are accounted for explicitly in the actuator coil-winding and driving scheme so that the coupling of the levitation control with the wall dynamics is minimized. This enables the selection of control feedback laws based on rigid-body dynamic considerations alone. Dynamic performance is investigated by theoretical and experimental study involving a prototype rotor-bearing system. The operating principles are validated and the dynamic behavior is shown to align well with the theoretical predictions.
机译:本文介绍了一种新型的具有分布式致动的主动磁轴承,其设计用于无接触支撑薄壁转子。提出了全动态分析,控制配方和实验评估。轴承运行的重要方面包括由于制造和组装过程中的不对称引起的转子壁的振动激励,以及相对于轴承的静态负载而言稳定运行的限制。对于所提出的设计,在执行器线圈绕组和驱动方案中明确考虑了转子壁弯曲的振动动力学,从而使悬浮控制与壁动力学的耦合最小化。这样就可以仅基于刚体动力学考虑因素来选择控制反馈律。通过涉及原型转子轴承系统的理论和实验研究来研究动态性能。验证了工作原理,并证明了动态行为与理论预测吻合良好。

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