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Estimation of Inertial Parameters of a Rigid Rotor Having Dynamic Unbalance on Active Magnetic Bearing

机译:刚性转子在主动磁轴承上具有动态不平衡的惯性参数的估计

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Non-uniform distribution of mass in a rigid rotor causes dynamic unbalance, as none of its principal axes of inertia is oriented along or parallel to the axis of rotation and the centre of mass is offset from the spin axis. A set of linear differential equations having time-varying coefficients express the dynamic behaviour. This paper assumes the rotor suspended on at least two Active Magnetic Bearings (AMBs) with known properties. Offset of centre-of-mass from the bearing centreline and skewness of inertial principal axes with respect to it, are estimated by minimizing the least square value of difference in response (at two planes close to the AMBs), predicted by the model with dynamic unbalance and the one with no unbalance at each time step. The estimated inertial parameters are found to be very close to the values used to simulate the actual model. Since the rigid rotor model is generic in nature, the procedure may be used to identify the inertial properties in actual situation without stopping the rotor. Thus, AMBs may be utilized to identify inertial properties and for smart balancing.
机译:在刚性转子中的质量不均匀分布导致动态不平衡,因为其主轴的任何主轴沿旋转轴线沿或平行地定向,并且质心偏离旋转轴。具有时变系数的一组线性微分方程表达了动态行为。本文假设转子悬浮在具有已知性质的至少两个主动磁轴承(AMB)上。通过最小化响应差异的最小平方值(在靠近AMB的两个平面上)来估计与惯性主轴的质量偏移的偏移偏移,估计由动态的模型预测的不平衡和每次步骤没有不平衡的人。发现估计的惯性参数非常接近用于模拟实际模型的值。由于刚性转子模型本质上是通用的,因此该过程可用于在实际情况下识别惯性性质而不停止转子。因此,可以利用AMB来识别惯性性质和智能平衡。

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