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Mathematical model of a flexible asymmetrical rotor for active magnetic bearing reaction wheel

机译:主动磁轴承反作用轮柔性非对称转子的数学模型

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The paper introduces the mathematical model of rotor for active magnetic bearing reaction/momentum wheels, used as actuator in spacecraft attitude and orbit control system. Developed model is used for estimation of critical speeds and forced oscillation magnitudes with a glance of the rotor modes. Rotor is considered as a two-mass system, consisting of a shaft and a rim, active magnetic bearings are assumed to be a linear elastic springs. The equations of the rotor motion are derived using the Lagrange equation. Developed model is verified by comparing the calculated Campbell diagrams with the results of the finite-element modal analysis, performed in the ANSYS software.
机译:介绍了主动磁轴承反作用/动量轮转子的数学模型,该模型在航天器姿态和轨道控制系统中用作执行器。所开发的模型可用于一目了然的转子模式来估算临界速度和强制振荡幅度。转子被认为是一个由轴和轮圈组成的双质量系统,有源电磁轴承被认为是线性弹性弹簧。使用拉格朗日方程式导出转子运动方程式。通过将计算出的坎贝尔图与在ANSYS软件中执行的有限元模态分析的结果进行比较,可以验证所开发的模型。

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