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Application of X-Ray Pulsar Navigation: A Characterization of the Earth Orbit Trade Space

机译:X射线Pulsar导航的应用:地球轨道贸易空间的特征

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摘要

The potential for pulsars as a navigation source has been studied since their discovery in 1967. X-ray pulsar navigation (XNAV) is a celestial navigation system that uses the consistent timing nature of X-ray photons from milli-second pulsars (MSP) to perform space navigation. Much of the challenge of XNAV comes from the faint signal, availability, and distant nature of pulsars. This thesis is the study of pulsar XNAV measurements for extended Kalman filter (EKF) tracking performance within a wide trade space of bounded Earth orbits, using a simulation of existing X-ray detector space hardware. An example of an X-ray detector for XNAV is the NASA Station Explorer for X-ray Timing and Navigation (SEXTANT) mission, a technology demonstration of XNAV set to perform on the International Space Station (ISS) in 2016. The study shows that the closed Earth orbit for XNAV performance is reliant on the orbit semi-major axis and eccentricity as well as orbit inclination. These parameters are the primary drivers of pulsar measurement availability and significantly influence the natural spacecraft orbit dynamics. Sensitivity to initial orbit determination error growth due to the scarcity of XNAV measurements within an orbital period require appropriate timing of initial XNAV measurements. The orbit angles of argument of perigee and right ascension of the ascending node, alongside the other orbit parameters, complete the initial cadence of XNAV measurements. The performance of initial XNAV measurements then propagates throughout the experimental period.
机译:自1967年发现以来已经研究了脉冲条的潜力作为导航源。X射线脉冲导航(XNAV)是一个天体导航系统,它使用来自毫秒脉冲节(MSP)的X射线光子的一致时序性质。执行空间导航。 XNAV的大部分挑战来自脉冲星的微弱信号,可用性和遥远的性质。本文使用现有的X射线探测器空间硬件的模拟,研究了对界面轨道宽阔的贸易空间内的扩展卡尔曼滤波器(EKF)跟踪性能的脉冲轨XNAV测量。用于XNAV的X射线探测器的一个例子是X-ray时序和导航(塞克兰人)任务的美国宇航局站探险家,这是2016年国际空间站(ISS)在国际空间站(ISS)上执行的技术演示。该研究表明XNAV性能的封闭式地球轨道依赖于轨道半主轴和偏心度以及轨道倾斜度。这些参数是Pulsar测量可用性的主要驱动因素,并显着影响自然航天器轨道动态。由于轨道周期内的XNAV测量稀缺导致的初始轨道确定误差增长的敏感性需要适当的XNAV测量时间。升降节点的临床和右提升的参数的轨道角度,以及其他轨道参数,完成XNAV测量的初始Cadence。初始XNAV测量的性能然后在整个实验期间传播。

著录项

  • 作者

    Wayne H. Yu;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 eng
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