...
首页> 外文期刊>GPS Solutions >Real-time precise orbit determination for BDS satellites using the square root information filter
【24h】

Real-time precise orbit determination for BDS satellites using the square root information filter

机译:使用Square Root Information滤波器的BDS卫星的实时精确轨道确定

获取原文
获取原文并翻译 | 示例
           

摘要

Though widely used to generate the global navigation satellite system (GNSS) ultra-rapid orbit products for real-time applications, the batch least-squares (LSQ) adjustment and precise orbit determination (POD) prediction is limited for satellites undergoing maneuvers. To generate the truly real-time orbit products, we introduce the square root information filter (SRIF) real-time POD strategy, in which a real-time satellite maneuver handling algorithm that adapts the stochastic model for irregular satellite behaviorsis implemented. The performance of the SRIF POD strategy is first evaluated with 1-month of data from multi-GNSS experiment (MGEX) network and BDS experimental tracking stations (BETS). Compared with the MGEX final products provided by GFZ (GBM), the SRIF solutions show higher precision than the ultra-rapid solutions. The averaged 3D RMS of the orbit differences between the SRIF solutions and the GBM final product is about 29.1cm and 22.5cm for the BDS IGSO and MEO satellites. The BDS orbits generated by SRIF are continuous over all the time, while the ultra-rapid orbits exhibit obvious jumps and discontinuity at the orbit update time. Validation by satellite laser ranging (SLR) shows that for GEO satellites, the SRIF solutions have better stability and continuity, whereas the GBM final products exhibit obvious accuracy degradation around the day boundary. To evaluate the performance of maneuver handling, the proposed method is further tested on 10 maneuver cases of BDS GEO and IGSO satellites. The start and end time of all maneuver events in different cases are precisely detected, which are consistent with the officially announced ones. Using the proposed strategy, the filter avoids divergence and outputs continuous orbit solutions during the maneuver periods and restores the normal POD within about 7.5h after the maneuver is finished.
机译:虽然广泛用于生成全球导航卫星系统(GNSS)超快速轨道产品用于实时应用,但是批次最小二乘(LSQ)调节和精确的轨道确定(POD)预测受到研发的卫星的限制。为了生成真正的实时轨道产品,我们介绍了Square Root Information滤波器(SRIF)实时POD策略,其中一个实时卫星操纵处理算法,它适应了实施的不规则卫星行为的随机模型。首先使用来自多GNSS实验(MGEx)网络和BDS实验跟踪站(BETS)的1个月数据进行评估SRIF POD策略的性能。与GFZ(GBM)提供的MGEx最终产品相比,SRIF解决方案比超快速解决方案显示出更高的精度。对于BDS IGSO和MEO卫星,SRIF解决方案和GBM最终产品之间的轨道差异的平均3D RMS约为29.1cm和22.5cm。 SRIF生成的BDS轨道一直在连续,而超快速轨道在轨道更新时间上表现出明显的跳跃和不连续性。卫星激光测距(SLR)的验证表明,对于GEO卫星,SRIF解决方案具有更好的稳定性和连续性,而GBM最终产品在日界周围表现出明显的精度下降。为了评估机动处理的性能,在BDS Geo和Igso卫星的10个机动案例中进一步测试了所提出的方法。所有机动事件的开始和结束时间都是精确地检测到不同案例中的,这与官方宣布的情况一致。使用所提出的策略,滤波器避免发散并在机动期间输出连续的轨道解决方案,并在机动完成后恢复约7.5h的普通吊舱。

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