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Estimation of Gravitation Parameters of Saturnian Moons Using Cassini Attitude Control Flight Data

机译:利用卡西尼姿态控制飞行数据估算土星卫星的引力参数

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A major science objective of the Cassini mission is to study Saturnian satellites. The gravitational properties of each Saturnian moon is of interest not only to scientists but also to attitude control engineers. When the Cassini spacecraft flies close to a moon, a gravity gradient torque is exerted on the spacecraft due to the mass of the moon. The gravity gradient torque will alter the spin rates of the reaction wheels (RWA). The change of each reaction wheel's spin rate might lead to overspeed issues or operating the wheel bearings in an undesirable boundary lubrication condition. Hence, it is imperative to understand how the gravity gradient torque caused by a moon will affect the reaction wheels in order to protect the health of the hardware. The attitude control telemetry from low-altitude flybys of Saturn's moons can be used to estimate the gravitational parameter of the moon or the distance between the centers of mass of Cassini and the moon. Flight data from several low-altitude flybys of three Saturnian moons, Dione, Rhea, and Enceladus, were used to estimate the gravitational parameters of these moons. Results are compared with values given in the literature.
机译:卡西尼号任务的主要科学目的是研究土星卫星。每个土星卫星的引力特性不仅引起科学家的兴趣,而且也引起姿态控制工程师的兴趣。当卡西尼号航天器靠近月球飞行时,由于月球质量,重力梯度扭矩会施加在航天器上。重力梯度转矩将改变反作用轮的旋转速度(RWA)。每个反作用轮的旋转速度的变化可能会导致超速问题或在不良的边界润滑条件下操作车轮轴承。因此,必须了解由月球引起的重力梯度转矩将如何影响反作用轮,以保护硬件的健康。土星卫星低空飞越的姿态控制遥测可用于估计月球的重力参数或卡西尼号与月球质心之间的距离。来自三个Saturnian卫星Dione,Rhea和Enceladus的几次低空飞越的飞行数据被用来估计这些卫星的引力参数。将结果与文献中给出的值进行比较。

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