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A Method of X-ray Pulsar-Based Navigation for Constellation in Libration Points

机译:一种基于X射线Pulsar的基于X射线脉冲导航的方法

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摘要

A method of X-ray pulsar-based navigation for satellites constellation in Halo orbit is given in this article. The dynamics of libration point orbits offer many opportunities for flexible, low-energy trajectories, and missions around libration points are arising. Autonomous navigation is necessary for spacecraft autonomy in libration point, as well as significantly benefits China's deep space missions. In this paper, the state equation is established according to the dynamic characteristic in the libration point orbit. The difference of pulse arrival time to different satellites can be regarded as the measurements in the measurement equation. Unscented Kalman filter is applied to estimate the state of the system. Simulations demonstrate that this method is feasible for autonomous navigation for satellites constellation in the Sun-Earth libration point orbit. Comparing X-ray pulsar-based method with the traditional inter-satellite links navigation principle, satellites constellation rotation can be solved. Combining inter-satellite links and pulsar measurements in the UKF filter, the state of the system can be estimated more precisely and in a more quick way.
机译:本文给出了卤素轨道中卫星星座的基于X射线脉冲的导航方法。自由点轨道的动态为灵活,低能量轨迹提供了许多机会,并产生了自由点的特派团。自动导航是利用波丘的自治权的必要条件,并显着利益中国的深度空间任务。在本文中,根据自由点轨道中的动态特性建立状态等式。可以将脉冲到达时间与不同卫星的差异视为测量方程中的测量值。应用于Unscented Kalman滤波器来估计系统的状态。模拟表明,这种方法对于太阳地球自由点轨道中的卫星星座的自主导航是可行的。将基于X射线Pulsar的方法与传统的卫星间连接导航原理进行比较,可以解决卫星星座旋转。组合卫星间链路和脉冲柱测量在UKF滤波器中,可以更精确地估计系统的状态,并以更快的方式估算。

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