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Exploration of magnetic suspension technology used for spacecraft micro-vibration isolation

机译:用于航天器微振动隔离的磁悬浮技术的探索

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Spacecraft micro-vibration is still an important issue that influences space remote-sensing resolution and satellite laser communication pointing precision. As its favorable low frequency oscillation suppression performance, active vibration control becomes a main research direction in the micro-vibration abatement. This paper adopts magnetic suspension vibration isolation control method to construct a 6-DOFs Stewart platform with 6 single DOF magnetic suspension actuators, which is used for isolating the micro-vibration generated by 4 single gimbal control moment gyroscopes(SGCMGs) disturbances. Then an integrated model including satellite platform, SGCMGs and magnetic suspension Stewart platform was developed. Finally, a comprehensive simulation proceeded to illustrate the availability of the magnetic suspension vibration isolation strategy.
机译:航天器的微振动仍然是影响空间遥感分辨率和卫星激光通信指向精度的重要问题。作为其良好的低频振荡抑制性能,主动振动控制成为微振动消除的主要研究方向。本文采用磁悬浮隔振控制方法,构建了具有6个单自由度磁悬浮致动器的6自由度Stewart平台,用于隔离4个单云台控制力矩陀螺仪(SGCMG)扰动产生的微振动。然后开发了包括卫星平台,SGCMG和磁悬浮Stewart平台的集成模型。最后,进行了全面的仿真,以说明磁悬浮振动隔离策略的可用性。

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