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Librations and obliquity of Mercury from the BepiColombo radio-science and camera experiments

机译:BepiColombo放射科学和照相机实验得出的水星的倾角和倾角

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摘要

A major goal of the BepiColombo mission to Mercury is the determination of the structure and state of Mercury's interior. Here the BepiColombo rotation experiment has been simulated in order to assess the ability to attain the mission goals and to help lay out a series of constraints on the experiment's possible progress. In the rotation experiment pairs of images of identical surface regions taken at different epochs are used to retrieve information on Mercury's rotation and orientation. The idea is that from observations of the same patch of Mercury's surface at two different solar longitudes of Mercury the orientation of Mercury can be determined, and therefore also the obliquity and rotation variations with respect to the uniform rotation. The estimation of the libration amplitude and obliquity through pattern matching of observed surface landmarks is challenging. The main problem arises from the difficulty to observe the same landmark on the planetary surface repeatedly over the MPO mission lifetime, due to the combination of Mercury's 3:2 spin-orbit resonance, the absence of a drift of the MPO polar orbital plane and the need to combine data from different instruments with their own measurement restrictions. By assuming that Mercury occupies a Cassini state and that the spacecraft operates nominally we show that under worst case assumptions the annual libration amplitude and obliquity can be measured with a precision of, respectively, 1.4arcseconds (as) and 1.0 as over the nominal BepiColombo MPO lifetime with about 25 landmarks for rather stringent illumination restrictions. The outcome of the experiment cannot be easily improved by simply relaxing the observational constraints, or increasing the data volume.
机译:BepiColombo前往水星的主要目标是确定水星内部结构和状态。在这里,对BepiColombo旋转实验进行了模拟,以评估实现任务目标的能力,并帮助对实验可能的进展提出一系列限制。在旋转实验中,使用在不同时期拍摄的相同表面区域的图像对来检索有关水星旋转和方向的信息。这个想法是,通过在两个不同的水银太阳经度下观察到同一块水星表面,可以确定水星的方向,因此也可以确定相对于均匀旋转的倾斜和旋转变化。通过观察到的表面界标的图案匹配来估计释放幅度和倾角是具有挑战性的。主要问题是由于水星3:2自旋轨道共振,MPO极地轨道平面没有漂移和MPO的结合,使得在MPO任务寿命期间难以在行星表面重复观测相同的地标而引起的。需要将来自不同仪器的数据与自己的测量限制结合起来。通过假设水星处于卡西尼状态并且该航天器名义上运行,我们表明在最坏情况的假设下,与标准BepiColombo MPO相比,年自由度振幅和倾角的测量精度分别为1.4毫秒(as)和1.0。使用寿命约25个地标,因此照明限制相当严格。仅通过放松观测约束或增加数据量就无法轻易改善实验结果。

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  • 来源
    《Planetary and space science》 |2011年第9期|p.848-861|共14页
  • 作者单位

    Royal Observatory of Belgium, Brussels, Belgium,Universite catholique de Louvain, Georges Lemaitre Centre for Earth and Climate Research (TECLIM), Earth and Life Institute (ELI), Louvain-la-Neuve, Belgium;

    Royal Observatory of Belgium, Brussels, Belgium;

    Royal Observatory of Belgium, Brussels, Belgium,Universite catholique de Louvain, Georges Lemaitre Centre for Earth and Climate Research (TECLIM), Earth and Life Institute (ELI), Louvain-la-Neuve, Belgium;

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

    bepicolombo; rotation experiment; internal structure;

    机译:贝比可伦坡;旋转实验;内部结构;

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