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GRACE Follow-On Accelerometer Data Recovery

机译:恩典后续加速度计数据恢复

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In Gravity Recovery and Climate Experiment (GRACE) Follow-on (GRACE-FO) mission, similar to its predecessor GRACE, the twin satellites are equipped with three-axis accelerometers, measuring the non-gravitational forces. After 1 month in orbit, during the in-orbit-checkout phase, the noise on GRACE-D accelerometer measurements elevated and resulted in systematical degradation of the data. For this reason, the GRACE-D data need to be replaced by synthetic data, the so-called transplant data, officially generated by the GRACE-FO Science Data System (SDS). The SDS transplant data are derived from the GRACE-C accelerometer measurements, by applying time and attitude corrections. Furthermore, model-based residual accelerations due to thruster firings on GRACE-D were added, proven to improve the data quality in gravity field recovery. However, preliminary studies of GRACE-FO data during the single accelerometer months show that the low degree zonal harmonics, in particular C-20 and C-30, are sensitive to the current transplant approach. In this work, we present a novel approach to recover the GRACE-D ACT1B data by incorporating non-gravitational force models and analyze its impact on monthly gravity field solutions. The results show the improved ACT1B data not only contributed to a noise reduction but also improved the estimates of the C-20 and C-30 coefficients. The application of this new approach demonstrates that the offset between Satellite Laser Ranging (SLR) and GRACE-FO derived C-30 time series can be reduced by the use of the alternative accelerometer product.
机译:在重力恢复和气候实验(GRACE)后续(GRACE-FO)任务中,与之前的GRACE类似,这两颗卫星配备了三轴加速计,用于测量非重力。在轨1个月后,在在轨检查阶段,GRACE-D加速计测量的噪声升高,导致数据系统性退化。因此,GRACE-D数据需要被合成数据取代,即所谓的移植数据,由GRACE-FO科学数据系统(SDS)正式生成。SDS移植数据来自GRACE-C加速计测量,通过应用时间和姿态修正。此外,由于GRACE-D上的推进器点火,增加了基于模型的剩余加速度,这被证明可以提高重力场恢复的数据质量。然而,对单个加速计月份的GRACE-FO数据的初步研究表明,低度分区谐波,尤其是C-20和C-30,对当前的移植方法非常敏感。在这项工作中,我们提出了一种新的方法,通过合并非引力模型来恢复GRACE-D ACT1B数据,并分析其对每月重力场解的影响。结果表明,改进后的ACT1B数据不仅有助于降低噪声,还改进了C-20和C-30系数的估计。这种新方法的应用表明,卫星激光测距(SLR)和GRACE-FO导出的C-30时间序列之间的偏移可以通过使用替代加速计产品来减少。

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