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考虑航天器轨道运动和系统偏差的基于X射线脉冲星的导航

X-ray Pulsar-Based Navigation Considering Spacecraft Orbital Motion and Systematic Biases.

作者信息

Xue Mengfan, Shi Yifang, Guo Yunfei, Huang Na, Peng Dongliang, Luo Ji'an, Shentu Han, Chen Zhikun

机构信息

School of Automation, Hangzhou Dianzi University, Xiasha Higher Education Zone, 2nd Street, Hangzhou 310018, China.

出版信息

Sensors (Basel). 2019 Apr 19;19(8):1877. doi: 10.3390/s19081877.

Abstract

The accuracy of X-ray pulsar-based navigation is greatly affected by the Doppler effect caused by the spacecraft orbital motion and the systematic biases introduced by the pulsar directional error, spacecraft-borne clock error, etc. In this paper, an innovative navigation method simultaneously employing the pulse phase (PP), the difference of two neighbor PPs (DPP) and the Doppler frequency (DF) of X-ray pulsars as measurements is proposed to solve this problem. With the aid of the spacecraft orbital dynamics, a single pair of PP and DF relative to the spacecraft's state estimation error can be estimated by using the joint probability density function of the arrival photon timestamps as the likelihood function. The systematic biases involved to the PP is proved to be nearly invariant over two adjacent navigation periods and the major part of it is eliminated in the DPP; therefore, the DPP is also exploited as additional navigation measurement to weaken the impact of systematic biases on navigation accuracy. Results of photon-level simulations show that the navigation accuracy of the proposed method is remarkably better than that of the method only using PP, the method using both PP and DF and the method using both PP and DPP for Earth orbit.

摘要

基于X射线脉冲星的导航精度会受到航天器轨道运动引起的多普勒效应以及脉冲星方向误差、星载时钟误差等引入的系统偏差的极大影响。本文提出一种创新的导航方法,该方法同时采用X射线脉冲星的脉冲相位(PP)、两个相邻脉冲相位之差(DPP)和多普勒频率(DF)作为测量值来解决这一问题。借助航天器轨道动力学,利用到达光子时间戳的联合概率密度函数作为似然函数,可以估计出相对于航天器状态估计误差的一对PP和DF。事实证明,涉及PP的系统偏差在两个相邻导航周期内几乎不变,并且其主要部分在DPP中被消除;因此,DPP也被用作额外的导航测量值,以减弱系统偏差对导航精度的影响。光子级模拟结果表明,对于地球轨道,所提方法的导航精度明显优于仅使用PP的方法、使用PP和DF的方法以及使用PP和DPP的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9104/6515265/7edbc136339a/sensors-19-01877-g001.jpg

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