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首页> 外文期刊>Transactions of the Japan society for aeronautical and space sciences >Synchronizing of Multiple Time-of-Arrivals for Pulsar-Based Navigation
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Synchronizing of Multiple Time-of-Arrivals for Pulsar-Based Navigation

机译:基于脉冲星导航的多个到达时间的同步

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Spacecraft can observe multiple sources to achieve the goal of absolute position determination in pulsar-based navigation. In this paper, we draw attention to the problems associated with synchronizing of multiple time-of-arrival (TOA) measurements. The importance of this for navigation performance is not fully appreciated. Based on high-precision pulsar timing models, we establish the linear pulse phase measurement equation for near-Earth spacecraft and deduce the formulae of apparent pulse frequency (APF). We also develop the TOA synchronization model that uses APF to propagate pulse phases. We apply this model in numerical simulations that implement the extended Kalman filter (EKF) to estimate navigation states for geostationary (GEO) satellites. The results show that our model can effectively control navigation errors after TOAs are synchronized properly. We expect that the TOA synchronization technique presented in this paper may be useful for performance improvement of pulsar-based navigation.
机译:航天器可以观察多个源,以实现基于脉冲星的导航中绝对位置确定的目标。在本文中,我们提请注意与多个到达时间(TOA)测量的同步相关的问题。这对于导航性能的重要性尚未完全意识到。基于高精度脉冲星计时模型,建立了近地航天器的线性脉冲相位测量方程,推导了视在脉冲频率(APF)公式。我们还开发了使用APF传播脉冲相位的TOA同步模型。我们将此模型应用于实现扩展卡尔曼滤波器(EKF)的数字仿真中,以估计对地静止(GEO)卫星的导航状态。结果表明,在正确同步TOA之后,我们的模型可以有效地控制导航错误。我们希望本文介绍的TOA同步技术可能对基于脉冲星导航的性能提高有用。

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