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Inertial Centering Approach for High Speed Flexible Rotor Systems, Supported by AMBs

机译:AMBS支持的高速柔性转子系统的惯性定心方法

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Undesired vibrations due to mechanical imbalance is an inevitable phenomenon related to high speed rotating systems. In the absence of radial asymmetry, the steady state response of the rotor can be represented as a synchronous forward circular whirling motion. In this motion, the mass elements of the rotor do not carry relative accelerations since they all orbit in a circular motion of a constant radius and identical frequency. Therefore, in these steady state conditions, the flexible rotor can be regarded as a rigid rotor. Motivated by this observation, a rigid body analysis is utilized in order to derive a set of constraint relations that are required for inertial centering, namely, for a rotation about the rotor's center of mass and its principal axis. In order to force the existence of the inertial centering constraints, the shaft is supported by a set of active magnetic bearings (AMBs), and a suitable control system is developed. The performances of the developed controller are demonstrated via numerical simulations.
机译:由于机械不平衡导致的不期望的振动是与高速旋转系统相关的不可避免的现象。在没有径向不对称的情况下,转子的稳态响应可以表示为同步向前圆形旋转运动。在这种运动中,转子的质量元件不承载相对加速度,因为它们在恒定半径和相同频率的圆周运动中轨道。因此,在这些稳态条件下,柔性转子可以被视为刚性转子。通过该观察的动机,利用刚性体分析来导出惯性定心所需的一组约束关系即,对于围绕转子的质心和其主要轴线的旋转来旋转。为了迫使惯性定心约束的存在,轴由一组有源磁轴承(AMB)支撑,并且开发了合适​​的控制系统。通过数值模拟证明了开发控制器的性能。

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