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Inclusion of GPS clock estimates for satellites Sentinel-3A/3B in DORIS geodetic solutions

机译:在Doris大地测量溶液中包含GPS时钟估计在Doris大地测量溶液中的卫星Sentinel-3a / 3b

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A unique architecture of Sentinel-3A and Sentinel-3B satellites includes the shared ultra-stable oscillator (USO) by the DORIS and GPS receivers. This concept enables to apply onboard GPS clock estimates in the DORIS processing substituting the DORIS polynomial clock model by the GPS epoch-wise model, together with a DORIS-specific clock offset. Such an approach is particularly profitable for the mitigation of the South Atlantic Anomaly (SAA) effect affecting the short-term frequency stability of the USO oscillator in the South America and South Atlantic region. The GPS clock behavior precisely maps the SAA effect and enables us to demonstrate a difference of the USO sensitivity to the SAA for Sentinel-3A and Sentinel-3B. We present world grid maps of clock time derivatives for both Sentinels, displaying a different sign of the direct effect and other differences in the USO memory/recovery effect. Moreover, we present the impact of SAA on 3D positioning where the largest SAA-related bias reaches several centimeters. We also determine an effect of the precise clock modeling on the Earth rotation parameter estimates. In addition to these improvements, the elimination of the SAA effect gives us an opportunity to get an almost SAA-free DORIS solution from Sentinel-3A and Sentinel-3B satellites. Using the combined solution of both Sentinels as a reference, we estimate the SAA effect on the DORIS beacon positions also for satellites Jason-2, Jason-3, Saral, Cryosat-2 and Hy-2A and find significant positioning biases for all the recent satellites except Saral.
机译:Sentinel-3a和sentinel-3b卫星的独特架构包括Doris和GPS接收器的共用超稳定振荡器(USO)。该概念能够在Doris处理中应用Doris PolyNomial时钟模型的Doris处理的板载GPS时钟估计,以及特定于Doris特定的时钟偏移。这种方法对于减轻南大西洋异常(SAA)效应影响南美洲和南大西洋地区USO振荡器短期频率稳定性的影响。 GPS时钟行为精确地映射SAA效果,使我们能够展示用于SAA的USO敏感性,用于SAA为SENINEL-3A和Sentinel-3B。我们为两个Sentinel提供了世界网格地图,为两个哨兵显示出直接效果的不同迹象和USO存储器/恢复效果的其他差异。此外,我们展示了Saa对3D定位的影响,其中最大的SAA相关偏差达到几厘米。我们还确定了精确时钟建模对地球旋转参数估计的影响。除了这些改进之外,消除SAA效果还为我们提供了从Sentinel-3A和Sentinel-3B卫星获得近似SAA多丽莎解决方案的机会。使用两个哨兵的组合解决方案作为参考,我们还估计了对Doris标信标位置的SAA效应也用于卫星Jason-2,Jason-3,Saral,CryoSat-2和Hy-2a,并找到最近的所有定位偏差除撒拉​​尔除外卫星。

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