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On the Possibility of Improving the Orbits of Satellites Based on Observations of Isolated X-Ray Pulsars

机译:基于孤立的X射线脉冲星的观测,改进卫星轨道的可能性

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At present, there is a great worldwide interest in the development of technologies that allow information about the X-ray emission from pulsating cosmic sources to be used to obtain navigation solutions for a spacecraft in deep space. In this paper, we illustrate the technique for determining the spatial position of a spacecraft based on the already existing data from the RXTE X-ray space observatory. We show that the spacecraft position toward the Crab pulsar can be determined using an X-ray detector with an effective area of about 0.6 m(2) in the energy range 3-15 keV with an accuracy up to 730 m in a signal integration time of similar to 1000 s. Extending the energy range to 1 keV (the efficiency of the RXTE/PCA spectrometer decreases dramatically at energies below 3 keV) will allow a spacecraft position accuracy of similar to 400-450 m to be achieved at the same effective area and up to 300-350 m when using detectors with an effective area of similar or equal to 1 m(2) in the energy range 1-10 keV.
机译:当前,世界范围内对技术的发展引起了极大的兴趣,这些技术允许将有关来自脉冲宇宙源的X射线发射的信息用于获取深空航天器的导航解决方案。在本文中,我们将说明根据RXTE X射线空间天文台的现有数据确定航天器空间位置的技术。我们表明,可以使用X射线探测器确定航天器朝向Crab脉冲星的位置,该探测器的有效面积约为0.6 m(2),能量范围为3-15 keV,在信号积分时间内的精度最高为730 m大约1000秒。将能量范围扩展到1 keV(能量低于3 keV时RXTE / PCA光谱仪​​的效率急剧下降)将允许在相同的有效面积和高达300-300 m的空间范围内实现接近400-450 m的航天器位置精度使用能量范围为1-10 keV的有效面积近似或等于1 m(2)的探测器时为350 m。

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