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Revisiting the light time correction in gravimetric missions like GRACE and GRACE follow-on

机译:重新探索重量计量的灯光时间校正,如恩典和恩典随访

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摘要

The gravity field maps of the satellite gravimetry missions Gravity Recovery and Climate Experiment (GRACE ) and GRACE Follow-On are derived by means of precise orbit determination. The key observation is the biased inter-satellite range, which is measured primarily by a K-Band Ranging system (KBR) in GRACE and GRACE Follow-On. The GRACE Follow-On satellites are additionally equipped with a Laser Ranging Interferometer (LRI), which provides measurements with lower noise compared to the KBR. The biased range of KBR and LRI needs to be converted for gravity field recovery into an instantaneous range, i.e. the biased Euclidean distance between the satellites' center-of-mass at the same time. One contributor to the difference between measured and instantaneous range arises due to the nonzero travel time of electro-magnetic waves between the spacecraft. We revisit the calculation of the light time correction (LTC) from first principles considering general relativistic effects and state-of-the-art models of Earth's potential field. The novel analytical expressions for the LTC of KBR and LRI can circumvent numerical limitations of the classical approach. The dependency of the LTC on geopotential models and on the parameterization is studied, and afterwards the results are compared against the LTC provided in the official datasets of GRACE and GRACE Follow-On. It is shown that the new approach has a significantly lower noise, well below the instrument noise of current instruments, especially relevant for the LRI, and even if used with kinematic orbit products. This allows calculating the LTC accurate enough even for the next generation of gravimetric missions.
机译:通过精确的轨道测定导出卫星重力任务重力恢复和气候实验(Grace)和Grace后续的重力场地图。关键观察是偏置的卫星间范围,主要由宽限和宽限地跟随K频段测距系统(KBR)测量。宽限性后续卫星另外配备了激光测距干涉仪(LRI),其与KBR相比,提供较低噪音的测量。 KBr和LRI的偏置范围需要转换成重力场恢复到瞬时范围内,即卫星在卫星核心之间的偏置欧几里德距离同时。由于航天器之间的电磁波的非零行进时间,所测量和瞬时范围之间的差异的一个贡献者出现。考虑到一般相对论效应和地球潜在领域的最新模型,我们重新审视从第一原理计算光时间校正(LTC)。 KBR和LRI的LTC的新型分析表达可以避免经典方法的数值限制。研究了LTC对地球势模型和参数化的依赖性,之后,将结果与恩典和恩典​​官方数据集中提供的LTC进行比较。结果表明,新方法具有显着较低的噪声,远低于当前仪器的仪器噪声,特别是对LRI相关的,甚至与运动轨道产品一起使用。这允许计算LTC准确即使对于下一代重量计量任务。

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  • 来源
    《Journal of Geodesy》 |2021年第5期|48.1-48.19|共19页
  • 作者单位

    Huazhong Univ Sci & Technol Sch Phys Wuhan 430074 Peoples R China|Chinese Acad Sci Inst Geodesy & Geophys APM Wuhan 430077 Peoples R China;

    Leibniz Univ Hannover Inst Gravitat Phys Max Planck Inst Gravitat Phys Albert Einstein Inst D-30167 Hannover Germany;

    Leibniz Univ Hannover Inst Gravitat Phys Max Planck Inst Gravitat Phys Albert Einstein Inst D-30167 Hannover Germany;

    Chinese Acad Sci Inst Geodesy & Geophys APM Wuhan 430077 Peoples R China|Sun Yat Sen Univ Sch Geospatial Engn & Sci Zhuhai 519082 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    GRACE follow-on; Light time correction; General relativity; Laser interferomery; K-band ranging;

    机译:恩典随访;光时间校正;一般相对性;激光干涉;k波段测距;

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