...
首页> 外文期刊>Journal of Geodesy >LEO constellation-augmented multi-GNSS for rapid PPP convergence
【24h】

LEO constellation-augmented multi-GNSS for rapid PPP convergence

机译:LEO星座增强型多GNSS,可实现PPP快速收敛

获取原文
获取原文并翻译 | 示例
           

摘要

The fast motion of low earth orbit (LEO) satellite contributes to the geometric diversity, allowing for rapid convergence of precise point positioning (PPP). In this contribution, we investigate the PPP performance of the LEO constellation-augmented full operational capability (FOC) multi-GNSS. We design six LEO constellations with different satellite numbers, orbit altitudes and orbit types, together with the FOC multi-GNSS constellations, and then simulate both the onboard LEO and ground-based observations. The multi-GNSS POD result shows much better orbit accuracy of 3.3, 2.7 and 2.6cm in radial, along-track and cross-track components, respectively, compared with that of 10.3, 9.2 and 8.9cm for GPS-only POD. Furthermore, the performance of LEO-augmented multi-GNSS PPP is evaluated. With the augmentation of 60-, 96-, 192- and 288-satellite LEO constellation, the multi-GNSS PPP convergence time can be shortened from 9.6 to 7.0, 3.2, 2.1 and 1.3min, respectively, in midlatitude region. For LEO-augmented GPS- and BDS-only PPP, the improvement is more significant with the convergence time dramatically shortened by 90% from about 25 to within 3min with 192- or 288-satellite constellation. The augmentation capability is also found to be associated with station latitude, and the higher latitude, the better performance. To enable about more than 70% significant reduction on convergence time, as well as considering the cost, the 192-satellite LEO constellation scheme is suggested. In terms of orbit altitude, the scheme of 1000km presents better performance than that of 600km. As for orbit type, the performances are comparable for polar and sun-synchronous orbits. Additionally, LEO-only PPP can be achieved with the convergence time of about 6.5min.
机译:低地球轨道(LEO)卫星的快速运动有助于实现几何多样性,从而实现精确点定位(PPP)的快速收敛。在这项贡献中,我们研究了LEO星座增强的全操作能力(FOC)多GNSS的PPP性能。我们设计了六个具有不同卫星号,轨道高度和轨道类型的LEO星座,以及FOC多GNSS星座,然后模拟了机载LEO和地面观测。与仅GPS的POD相比,多重GNSS POD的径向,沿轨道和交叉轨道分量的轨道精度分别好得多,分别为3.3、2.7和2.6cm,分别为10.3、9.2和8.9cm。此外,评估了LEO增强型多GNSS PPP的性能。随着60、96、192和288卫星LEO星座的增加,在中纬度地区,多GNSS PPP的收敛时间可以分别从9.6分钟缩短到7.0、3.2、2.1和1.3分钟。对于仅LEO增强的GPS和BDS的PPP,使用192或288卫星星座时,收敛时间从大约25分钟缩短到3分钟以内,缩短了90%。还发现增强能力与站点纬度相关联,纬度越高,性能越好。为了使收敛时间显着减少约70%以上,并考虑到成本,建议使用192卫星LEO星座方案。在轨道高度方面,1000 km的方案比600 km的方案表现更好。至于轨道类型,其性能可与极地轨道和太阳同步轨道相媲美。另外,仅LEO的PPP即可实现约6.5分钟的收敛时间。

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