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Spacecraft angular velocity estimation using sequential observations of a single vector

机译:使用单载体的顺序观察的航天器角速度估计

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A new approach is presented for estimating the angular rate of a tumbling, momentum wheel-equipped spacecraft from sequential measurements of a single directional vector. The method consists of a two-stage algorithm. The first stage is a deterministic algorithm that provides a coarse estimation of the satellite angular velocity. Combining the kinematics equations, corresponding to the apparent motion of he vector measurements in the satellite body frame, with the satellite dynamic equations of motion, enables the development of an almost one-to-one relation between the vector measurements and the satellite angular rate. This relation is used to reconstruct the satellite angular velocity. The second stage is an extended Kalman filter which is initialized using the first stage dcrude estimates. This combination renders the filter accurate and robust. A simulation study, in which angular rates of up to 0.5 rad/s were implemented, is used to demonstrate the performance of the method.
机译:提出了一种用于估计翻滚的角速率,从单个方向向量的顺序测量估计翻滚的角速率。该方法包括两阶段算法。第一阶段是一种确定性算法,其提供卫星角速度的粗略估计。将运动学方程组合在一起,对应于卫星体框架中的卫星体框架中的视觉运动,具有卫星动态运动的运动,使得能够在矢量测量和卫星角速率之间开发几乎一对一的关系。该关系用于重建卫星角速度。第二阶段是扩展卡尔曼滤波器,其使用第一阶段的副化估计初始化。这种组合使滤波器精确且坚固。一种模拟研究,其中实现了高达0.5 rad / s的角度率,用于证明该方法的性能。

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