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Precise Orbit Solution for Swarm Using Space-Borne GPS Data and Optimized Pseudo-Stochastic Pulses

机译:利用太空GPS数据和优化的伪随机脉冲的群体精确轨道解决方案

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摘要

Swarm is a European Space Agency (ESA) project that was launched on 22 November 2013, which consists of three Swarm satellites. Swarm precise orbits are essential to the success of the above project. This study investigates how well Swarm zero-differenced (ZD) reduced-dynamic orbit solutions can be determined using space-borne GPS data and optimized pseudo-stochastic pulses under high ionospheric activity. We choose Swarm space-borne GPS data from 1–25 October 2014, and Swarm reduced-dynamic orbits are obtained. Orbit quality is assessed by GPS phase observation residuals and compared with Precise Science Orbits (PSOs) released by ESA. Results show that pseudo-stochastic pulses with a time interval of 6 min and a priori standard deviation (STD) of 10−2 mm/s in radial (R), along-track (T) and cross-track (N) directions are optimized to Swarm ZD reduced-dynamic precise orbit determination (POD). During high ionospheric activity, the mean Root Mean Square (RMS) of Swarm GPS phase residuals is at 9–11 mm, Swarm orbit solutions are also compared with Swarm PSOs released by ESA and the accuracy of Swarm orbits can reach 2–4 cm in R, T and N directions. Independent Satellite Laser Ranging (SLR) validation indicates that Swarm reduced-dynamic orbits have an accuracy of 2–4 cm. Swarm-B orbit quality is better than those of Swarm-A and Swarm-C. The Swarm orbits can be applied to the geomagnetic, geoelectric and gravity field recovery.
机译:Swarm是欧洲航天局(ESA)的项目,于2013年11月22日发射,由三颗Swarm卫星组成。成群的精确轨道对于上述项目的成功至关重要。这项研究调查了如何利用星载GPS数据和在高电离层活动下优化的伪随机脉冲来确定Swarm零差(ZD)降动态轨道解决方案的效果。我们选择2014年10月1日至25日的Swarm星载GPS数据,并获得Swarm降动态轨道。通过GPS相位观测残差评估轨道质量,并将其与ESA发布的精确科学轨道(PSO)进行比较。结果表明,伪随机脉冲的时间间隔为6分钟,先验标准偏差(STD)为10 -2 mm / s,沿径向(R),沿轨迹(T)和交叉优化了航迹(N)方向,以实现Swarm ZD降动态精确轨道确定(POD)。在高电离层活动期间,Swarm GPS相位残差的平均均方根(RMS)为9-11 mm,还将Swarm轨道解与ESA发布的Swarm PSO进行了比较,Swarm轨道的精度可以达到2-4 cm。 R,T和N方向。独立的卫星激光测距(SLR)验证表明,群体动态减少轨道的精度为2-4 cm。 Swarm-B轨道质量优于Swarm-A和Swarm-C。 Swarm轨道可以应用于地磁,地电和重力场的恢复。

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