论文标题

在激光范围干涉仪上的宽限期范围的比例因子测定,包括热耦合

Scale Factor Determination for the GRACE-Follow On Laser Ranging Interferometer including Thermal Coupling

论文作者

Misfeldt, Malte, Müller, Vitali, Müller, Laura, Wegener, Henry, Heinzel, Gerhard

论文摘要

GRACE后续卫星带有第一个飞机间激光射程干涉仪(LRI)。在轨道上四年多后,LRI的表现优于常规微波仪器(MWI)的灵敏度。但是,在当前的数据处理方案中,LRI产品仍然需要MWI数据来确定未知的绝对激光频率,代表将原始相测量转换为物理位移的标尺。在本文中,我们得出了用于精确执行从相测量到范围的转换的公式,从而考虑了不同的载体频率。此外,由于载体频率的知识不确定性以及未校正的时间偏见而导致的主要误差。在第二部分中,我们解决了LRI对MWI的依赖性在当前使用的跨校准方案中,并为LRI激光频率提供了三种不同的模型,其中两个在很大程度上与MWI独立。此外,我们分析了热变化对比例因子估计值和LRI-MWI残差的贡献。得出了称为热耦合(TC)的线性模型,该模型将LRI和MWI之间的差异显着降低到MWI观察限制比较的水平。

The GRACE Follow-On satellites carry the very first inter-spacecraft Laser Ranging Interferometer (LRI). After more than four years in orbit, the LRI outperforms the sensitivity of the conventional Microwave Instrument (MWI). However, in the current data processing scheme, the LRI product still needs the MWI data to determine the unknown absolute laser frequency, representing the ruler for converting the raw phase measurements into a physical displacement in meters. In this paper, we derive formulas for precisely performing that conversion from the phase measurement into a range, accounting for a varying carrier frequency. Furthermore, the dominant errors due to knowledge uncertainty of the carrier frequency as well as uncorrected time biases are derived. In the second part, we address the dependency of the LRI on the MWI in the currently employed cross-calibration scheme and present three different models for the LRI laser frequency, two of which are largely independent of the MWI. Furthermore, we analyze the contribution of thermal variations on the scale factor estimates and the LRI-MWI residuals. A linear model called Thermal Coupling (TC) is derived that significantly reduces the differences between LRI and MWI to a level where the MWI observations limit the comparison.

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