论文标题

比较Grace-fo KBR和LRI范围数据与关注载体频率变化

Comparing GRACE-FO KBR and LRI ranging data with focus on carrier frequency variations

论文作者

Müller, Vitali, Hauk, Markus, Misfeldt, Malte, Müller, Laura, Wegener, Henry, Yan, Yihao, Heinzel, Gerhard

论文摘要

宽限期后续卫星任务测量了两个卫星之间的距离变化,以得出每月的重力场图,表明由于水文学,地震学,气候学等,地球上的地球上的质量可变性几乎为100 km。该任务拥有两个基于k(a)频带范围(kbr)的传统微波系统和一种新颖的激光范围仪器(LRI),均依靠干涉相位读数。在本文中,我们展示了如何使用时间依赖性载体频率(或波长)将相位测量值转换为范围数据,该载体频率(或波长)考虑了微波或激光频率的潜在盘中可变性。此外,我们分析了KBR-LRI残差,并讨论哪些错误和噪声促进者限制了高和低傅立叶频率的残差。事实证明,通过考虑处理中的盘中载体频率变化,可以稍微改善KBR和LRI偏置范围观察之间的一致性。尽管效果可能很小,在当前的精度水平上与重力场的确定无关,但分析与详细的仪器表征相关,并且有可能与将来更精确的任务相关。

The GRACE Follow-On satellite mission measures distance variations between the two satellites in order to derive monthly gravity field maps, indicating mass variability on Earth on a few 100 km scale due to hydrology, seismology, climatology and others. This mission hosts two ranging instruments, a conventional microwave system based on K(a)-band ranging (KBR) and a novel laser ranging instrument (LRI), both relying on interferometric phase readout. In this paper we show how the phase measurements can be converted into range data using a time-dependent carrier frequency (or wavelength) that takes potential intraday variability in the microwave or laser frequency into account. Moreover, we analyze the KBR-LRI residuals and discuss which error and noise contributors limit the residuals at high and low Fourier frequencies. It turns out that the agreement between KBR and LRI biased range observations can be slightly improved by considering intraday carrier frequency variations in the processing. Although the effect is probably small enough to have little relevance for gravity field determination at the current precision level, the analysis is of relevance for detailed instrument characterization and potentially for future more precise missions.

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