【24h】

Novel method of fast satellite movement information acquisition from VLBI observations

机译:基于VLBI观测的快速卫星运动信息获取新方法

获取原文
获取原文并翻译 | 示例

摘要

Very Long Baseline Interferometry (VLBI) is a radio astronomy technique. The diameter of a VLBI synthetic telescope equals the longest baseline (> 1000 Km). Therefore, VLBI can achieve very high angular resolution, and has unique advantage in the deep space tracking compared with the traditional radio ranging and Doppler tracking technologies. In the satellite VLBI observations, the spacecraft movement information such as delay or delay rate observable is very useful in the spacecraft position and orbit determination. This paper introduces an algorithm of obtaining satellite VLBI delay and delay rate based on short time correlation. Using the Differential One-way Doppler of the telemetry carrier, this method is able to complete fast fringe search, correlation, producing delay and delay rate with high accuracy from the satellite telemetry signals automatically, without any apriori orbit information. A special software correlator--Fast Fringe Searcher (FFS) was developed and successfully used in the data processing of the satellite VLBI experiments, such as the Chinese TC-1 Geospace satellite and the European SMART-1 lunar probe VLBI observations. The delay and delay rate produced by FFS were used in TC-1 orbit determination, which was the first Chinese VLBI satellite orbit determination experiment. Besides, an accurate VLBI correlator delay model can be constructed from FFS output. According to this model, a general VLBI correlator can produce more precise delay and delay rate through long time integration. This method will be applied to the real-time VLBI correlator system of the Chinese lunar exploration project in the near future.
机译:超长基线干涉测量法(VLBI)是射电天文技术。 VLBI合成望远镜的直径等于最长的基线(> 1000 Km)。因此,与传统的无线电测距和多普勒跟踪技术相比,VLBI可以实现非常高的角分辨率,并且在深空跟踪中具有独特的优势。在卫星VLBI观测中,航天器运动信息(例如可观察到的延迟或延迟率)在航天器位置和轨道确定中非常有用。介绍了一种基于短时相关的卫星VLBI延迟和延迟率的获取算法。通过使用遥测载波的差分单向多普勒,该方法能够自动完成卫星的遥测搜索,相关,自动生成延迟和延迟率,而无需任何先验轨道信息,从而可以从卫星遥测信号中获得较高的精度。开发了一种特殊的软件相关器-快速边缘搜索器(FFS),并将其成功用于卫星VLBI实验的数据处理中,例如中国TC-1地球空间卫星和欧洲SMART-1月球探测器VLBI观测。由FFS产生的延迟和延迟率被用于TC-1轨道确定,这是中国第一个VLBI卫星轨道确定实验。此外,可以从FFS输出构建准确的VLBI相关器延迟模型。根据该模型,一般的VLBI相关器可以通过长时间积分产生更精确的延迟和延迟率。该方法将在不久的将来应用于中国月球探测项目的实时VLBI相关器系统。

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