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Enceladus Plume Density Modeling and Reconstruction for Cassini Attitude Control System

机译:卡西尼姿态控制系统的土豚羽密度建模与重构

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In 2005, Cassini detected jets composed mostly of water, spouting from a set of nearly parallel rifts in the crust of Enceladus, an icy moon of Saturn. During an Enceladus flyby, either reaction wheels or attitude control thrusters on the Cassini spacecraft are used to overcome the external torque imparted on Cassini due to Enceladus plume or jets, as well as to slew the spacecraft in order to meet the pointing needs of the on-board science instruments. If the estimated imparted torque is larger than it can be controlled by the reaction wheel control system, thrusters are used to control the spacecraft. Having an engineering model that can predict and simulate the external torque imparted on Cassini spacecraft due to the plume density during all projected low-altitude Enceladus flybys is important. Equally important is being able to reconstruct the plume density after each flyby in order to calibrate the model. This paper describes an engineering model of the Enceladus plume density, as a function of the flyby altitude, developed for the Cassini Attitude and Articulation Control Subsystem, and novel methodologies that use guidance, navigation, and control data to estimate the external torque imparted on the spacecraft due to the Enceladus plume and jets. The plume density is determined accordingly. The methodologies described have already been used to reconstruct the plume density for three low-altitude Enceladus flybys of Cassini in 2008 and will continue to be used on all remaining low-altitude Enceladus flybys in Cassini's extended missions.
机译:2005年,卡西尼号探测到了大部分由水组成的喷射流,它们是从土星冰冷的月亮土卫二土卫二的地壳中几组几乎平行的裂口喷出的。在土卫二飞越过程中,卡西尼号飞船上的反作用轮或姿态控制推进器用于克服土卫二的羽流或喷流所产生的卡西尼号上的外部扭矩,以及旋转航天器以满足飞船指向性的需求。机科学仪器。如果估算的施加扭矩大于反作用轮控制系统所能控制的扭矩,则可使用推进器来控制航天器。重要的是,拥有一个工程模型来预测和模拟卡西尼号航天器在所有预计的低空土卫二飞越期间的羽流密度所施加的外部扭矩,这一点很重要。同样重要的是能够在每次飞越之后重建羽流密度以校准模型。本文描述了为卡西尼航空姿态和关节运动控制子系统开发的土卫二羽流密度随飞行高度变化的工程模型,以及使用制导,导航和控制数据来估算施加在飞机上的外部扭矩的新颖方法。由于土卫二的羽流和喷射流而产生的航天器。相应地确定羽流密度。所描述的方法已在2008年用于重建卡西尼号的三个低空土卫二飞掠者的羽流密度,并将继续用于卡西尼号扩展任务中所有其余的低空土卫二飞掠者的羽流密度。

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    《SpaceOps conference》|2010年|3375-3403|共29页
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    Siamak Sarani;

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