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首页> 外文期刊>IEEE Transactions on Industrial Electronics >Real-Time Control of Rotor Vibrations With Active Bump-Type Foil Bearings
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Real-Time Control of Rotor Vibrations With Active Bump-Type Foil Bearings

机译:带有主动凸型箔轴承的转子振动的实时控制

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摘要

The rotor supported by gas foil bearings (GFBs) suffers severe vibrations at extremely high rotating speed, which weakens the stability of the rotor-GFBs system. Although current solutions including increasing structural damping and mechanical preloads of GFBs suppress the rotor vibrations, they lead into larger wear during the lift-off process and higher friction torque during operation. In this article, active bump-type foil bearings with advantages of actively controlled mechanical preloads are utilized to rotor-GFBs system aiming at suppressing the rotor vibrations in real time. Open-loop control is utilized to obtain the proper U at different rotating speeds. The bifurcation diagrams of the rotordynamic responses under different voltages and rotating speeds are predicted to explain the relationship between U and real-time control of rotor vibrations theoretically. Proportional-integral-differential control method is utilized to control the vibrations of rigid rotor within relatively tight bounds under the conditions of constant rotating speed, coast-down process, and speed up and down process.
机译:由气箔轴承(GFB)支撑的转子以极高的旋转速度造成严重的振动,这削弱了转子-GFBS系统的稳定性。虽然电流解决方案包括增加的结构阻尼和GFB的机械预载荷抑制转子振动,但它们在剥离过程中导致较大的磨损,并且在操作期间更高的摩擦扭矩。在本文中,具有主动控制机械预载荷的有源凸块型箔轴承用于旋转GFBS系统,其旨在实时抑制转子振动。开环控制用于以不同的旋转速度获得适当的U.预测不同电压和旋转速度下的旋转动力学响应的分叉图,以解释理论上的u和转子振动的实时控制之间的关系。利用比例整体差分控制方法来控制恒定旋转速度,海岸向下过程的条件下相对紧的界限内的刚性转子的振动,加速加速。

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