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Application of CCD drift-scan photoelectric technique on monitoring GEO satellites

机译:CCD漂移扫描光电技术在GEO卫星监测中的应用

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摘要

Geosynchronous Earth Orbit (GEO) satellites are widely used because of their unique characteristics of high-orbit and remaining permanently in the same area of the sky. Precise monitoring of GEO satellites can provide a key reference for the judgment of satellite operation status, the capture and identification of targets, and the analysis of collision warning. The observation using ground-based optical telescopes plays an important role in the field of monitoring GEO targets. Different from distant celestial bodies, there is a relative movement between the GEO target and the background reference stars, which makes the conventional observation method limited for long focal length telescopes. CCD drift-scan photoelectric technique is applied on monitoring GEO targets. In the case of parking the telescope, the good round images of the background reference stars and the GEO target at the same sky region can be obtained through the alternating observation of CCD drift-scan mode and CCD stare mode, so as to improve the precision of celestial positioning for the GEO target. Observation experiments of GEO targets were carried out with 1.56-meter telescope of Shanghai Astronomical Observatory. The results show that the application of CCD drift-scan photoelectric technique makes the precision of observing the GEO target reach the level of 0.2″, which gives full play to the advantage of the long focal length of the telescope. The effect of orbit improvement based on multi-pass of observations is obvious and the prediction precision of extrapolating to 72-h is in the order of several arc seconds in azimuth and elevation.
机译:地球同步地球轨道(GEO)卫星因其高轨道的独特特性而永久保留在天空的同一区域,因此被广泛使用。对GEO卫星的精确监控可以为卫星运行状态的判断,目标的捕获和识别以及碰撞预警的分析提供关键参考。使用地面光学望远镜进行的观测在监测GEO目标方面发挥着重要作用。与远处的天体不同,GEO目标与背景参考星之间存在相对运动,这使得传统的观测方法仅限于长焦距望远镜。 CCD漂移扫描光电技术被应用于监测GEO目标。停车时,通过交替观察CCD漂移扫描模式和CCD凝视模式,可以获得背景参考星和GEO目标在同一天空区域的良好圆形图像,从而提高了精度。 GEO目标的天体定位。用上海天文台1.56米望远镜进行GEO目标观测实验。结果表明,CCD漂移扫描光电技术的应用使GEO目标的观测精度达到了0.2英寸的水平,充分发挥了望远镜长焦距的优势。基于多次观测的轨道改进效果很明显,外推至72-h的预测精度在方位角和仰角上约为几弧秒。

著录项

  • 来源
    《Advances in space research》 |2018年第9期|2320-2327|共8页
  • 作者单位

    Shanghai Astronomical Observatory, Chinese Academy of Sciences,School of Astronomy and Space Science, University of Chinese Academy of Sciences;

    Shanghai Astronomical Observatory, Chinese Academy of Sciences;

    Shanghai Astronomical Observatory, Chinese Academy of Sciences;

    Shanghai Astronomical Observatory, Chinese Academy of Sciences;

    Shanghai Astronomical Observatory, Chinese Academy of Sciences,School of Astronomy and Space Science, University of Chinese Academy of Sciences;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Geosynchronous Earth Orbit; Optical observations; Celestial positioning;

    机译:地球同步地球轨道;光学观测;天体定位;

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