首页> 外文会议>IAF Space Operations Symposium;International Astronautical Congress >Satellite flight dynamics activities supported by optical observations, lessons learnt from operational experience
【24h】

Satellite flight dynamics activities supported by optical observations, lessons learnt from operational experience

机译:光学观测支持的卫星飞行动态活动,从操作体验中吸取的经验教训

获取原文

摘要

Since June 2018 EUMETSAT has incorporated optical observations into the operational orbit determination process for the four geosynchronous Meteosat satellites, with the objective of assessing the suitability of optical data to support the operational activities, and evaluating the accuracy of routine orbit determination and manoeuvres calibration using mixed data from ranging stations and telescopes. Up to now, the flight dynamic activities were based on ranging data from a network of stations, with alternate tracking from two stations per satellite. The optical measurements are provided by the Deimos Sky Survey (DeSS) telescopes, using additional sensors as a backup in case of adverse weather conditions or technical issues. The processing of the measurement data is performed by two separate teams at Eumetsat and Deimos. Each satellite is observed at least twice per week, in routine mode, plus additional observations when required, for manoeuvre calibration purposes. The orbit determination based on those observations is automatically performed weekly by means of a Batch Least Squares approach with a two-week rolling window. In absence of manoeuvres, this allows determining the solar radiation pressure coefficient while maintaining consistency with the previously computed orbits. When a manoeuvre is scheduled, optical observations are taken as soon as possible after the manoeuvre itself. In this case, the paper shows that the orbit determination with optical information provides results comparable with the nominal range-only orbits, with accuracy gain in case of fusion of the different measurements. This paper describes the processing chain put in place at Deimos for scheduling and performing the observations, and for the processing of measurement data, and it summarizes the findings after more than one year of service. The paper presents an evaluation of orbital quality and capability to estimate manoeuvres executed by the satellites, and identifies the benefits f
机译:自2018年6月以来,EumetSAT已将光学观测纳入了四个地球同步Meteosat卫星的操作轨道测定过程,目的是评估光学数据以支持操作活动的适用性,并评估常规轨道测定的准确性和使用混合的校准的准确性来自路径和望远镜的数据。到目前为止,飞行动态活动基于来自车站网络的测距,从每个卫星的两个站进行交替跟踪。光学测量由Deimos Sky Square(Dess)望远镜提供,在恶劣天气条件或技术问题的情况下,使用额外的传感器作为备份。测量数据的处理由Eumetsat和Deimos的两个单独的团队执行。对于机动校准目的,每周至少两次观察每周至少两次,以及在需要时加上额外的观察。基于这些观察结果的轨道确定通过具有两周滚动窗口的批次最小二乘法自动执行每周一次。在没有机动的情况下,这允许确定太阳辐射压力系数,同时保持与先前计算的轨道的一致性。当调度机动时,在机动自身之后尽快拍摄光学观察。在这种情况下,本文示出了利用光学信息的轨道确定提供了与仅具有标称范围的轨道相当的结果,以便在融合不同测量的情况下的精度增益。本文介绍了在DEIMOS中放置的处理链,用于调度和执行观察,以及用于处理测量数据,并且它总结了一年以上的服务后的结果。本文提出了对轨道质量和能力的评估,以估算卫星执行的机动,并识别益处F.

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号