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LEVITATION AND VIBRATION SUPRESSION OF AN ELASTIC ROTOR BY USING ACTIVE MAGNETIC BEARINGS

机译:主动磁轴承对弹性转子的悬浮和振动抑制

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This paper presents a novel modeling method and a control system design procedure for a flexible rotor with many elastic modes using active magnetic bearings. The purpose of our research is to let the rotor rotate passing over the 1st and the 2nd critical speeds caused by flexible modes. To achieve this, it is necessary to control motion and vibration of the flexible rotor simultaneously. The new modeling method named as Extended Reduced Order Physical Model is presented to express its motion and vibration uniformly. By using transfer function of flexible rotor-Active Magnetic Bearings system, we designed a local jerk feedback control system and stability analysis by using root locus is carried out. Levitation experimentation is performed and stable levitation and significant vibration suppression effect is achieved.
机译:本文提出了一种新型的建模方法和控制系统的设计程序,该方法使用主动磁轴承来实现具有多种弹性模式的挠性转子。我们研究的目的是让转子在灵活模式下超过第一和第二临界速度旋转。为此,必须同时控制挠性转子的运动和振动。提出了一种新的建模方法,称为扩展降阶物理模型,用于统一表示其运动和振动。利用挠性转子-主动电磁轴承系统的传递函数,设计了一个局部冲击反馈控制系统,并利用根轨迹进行了稳定性分析。进行悬浮试验,达到稳定的悬浮和显着的抑振效果。

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