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首页> 外文期刊>Journal of Sound and Vibration >Dynamic modelling and observation of micro-vibrations generated by a Single Gimbal Control Moment Gyro
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Dynamic modelling and observation of micro-vibrations generated by a Single Gimbal Control Moment Gyro

机译:单云台控制力矩陀螺仪产生的微振动的动态建模和观察

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摘要

Control Moment Gyros (CMGs) are commonly used as actuators of attitude control in spacecraft. Micro-vibrations generated by CMGs will influence the performance of high-sensitivity instruments on-board the spacecraft; however, the micro-vibration characteristics of CMGs are not yet clearly understood. This research focuses on dynamic modelling and observation of micro-vibrations generated by CMGs. Firstly, the energy method was employed to develop a theoretical model describing a Single Gimbal CMG (SGCMG). This model fully considers the compliance of the internal bearing systems and the coupled motions of the rotating flywheel and the gimbal. Secondly, the micro-vibration characteristics of a SGCMG were tested using the standard Kistler table. Finally, the theoretical model was validated by comparing it against the disturbance characteristics obtained from the experimental tests, which revealed that predictions of the theoretical model consistently predicted the results of experimental tests. Therefore, the model presented here can be used to predict the micro-vibration characteristics of a SGCMG.
机译:控制力矩陀螺仪(CMG)通常用作航天器中姿态控制的执行器。 CMG产生的微振动将影响航天器上高灵敏度仪器的性能;然而,尚未清楚地了解CMG的微振动特性。这项研究专注于CMG产生的微振动的动态建模和观察。首先,采用能量方法建立了描述单云台CMG(SGCMG)的理论模型。该模型充分考虑了内部轴承系统的柔顺性以及旋转飞轮和万向架的耦合运动。其次,使用标准奇石乐表测试了SGCMG的微振动特性。最后,通过与实验测试得到的干扰特性进行比较,对理论模型进行了验证,这表明理论模型的预测能够一致地预测实验测试的结果。因此,此处介绍的模型可用于预测SGCMG的微振动特性。

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