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Stability of spinning satellite under axial thrust and internal mass motion

机译:旋转卫星在轴向推力和内部质量运动下的稳定性

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摘要

This paper considers a spinning rigid body and a particle with internal motion under axial thrust. This model is helpful for gaining insights into the nutation anomalies that occurred near the end of orbit injections performed by STAR-48 rocket motors. The stability of this system is investigated by means of linearized equations about a uniform spin reference state. In this model, a double root does not necessarily imply instability. The resulting stability condition defines a manifold in the parameter space. A detailed study of this manifold and the parameter space shows that the envelope of the constant solutions is in fact the stability boundary. Only part of the manifold defines a physical system and the range of frequency values that make the system unstable is restricted. Also it turns out that an increase of the spring stiffness, which restrains the internal motion, does not necessarily increase the stability margin. The application of the model is demonstrated using the orbit injection data of ESA's Ulysses satellite in 1990.
机译:本文考虑了旋转的刚体和在轴向推力作用下具有内部运动的粒子。该模型有助于深入了解STAR-48火箭发动机在轨道注入结束后发生的章动异常。通过关于均匀自旋参考状态的线性化方程来研究该系统的稳定性。在此模型中,双根不一定表示不稳定。所得的稳定性条件在参数空间中定义了一个流形。对流形和参数空间的详细研究表明,常数解的包络实际上是稳定性边界。歧管中只有一部分定义了一个物理系统,并且限制了使系统不稳定的频率值范围。还可以证明,限制内部运动的弹簧刚度的增加并不一定会增加稳定性裕量。该模型的应用通过1990年ESA的Ulysses卫星的轨道注入数据进行了演示。

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