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Determination and uncertainty analysis of mercury libration using BepiColombo HRIC images

机译:使用BepiColombo HRIC图像确定和释放汞的不确定度分析

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BepiColombo is an upcoming joint ESA/JAXA mission to Mercury. In particular the High Spatial Resolution Camera (HRIC), part of the SIMBIO-SYS (Spectrometer and Imagers for MPO Bepicolombo Integrated Observatory — SYStem) instrument suite, will characterize in detail the surface of the planet. In this work the BepiColombo rotation experiment is analysed: goal of the experiment is to investigate Mercury's interior measuring its rotational state. In this experiment images of surface regions taken at different epochs are used to retrieve information on Mercury's rotation and libration parameters. This analysis requires the use of an accurate model of the rotation of Mercury, to correlate the position of observed landmarks with planet libration. Then model parameters can be derived from observations using a maximum likelihood estimator. Uncertainties on spacecraft position, spacecraft attitude, imaged landmark position and camera intrinsic parameters result in the overall uncertainty on the estimated parameters. Simulations of the experiment and uncertainty analysis show that, with a small number of landmarks/images, the total planet libration can be measured. This analysis provides also support for the better design of the experiment in order to attain its scientific goals.
机译:BepiColombo是即将进行的ESA / JAXA联合水星任务。特别是高空间分辨率相机(HRIC),它是SIMBIO-SYS(用于MPO Bepicolombo综合天文台的光谱仪和成像仪-SYStem)仪器套件的一部分,将详细描述行星的表面。在这项工作中,对BepiColombo旋转实验进行了分析:该实验的目的是研究水星内部测量其旋转状态的过程。在该实验中,使用在不同时期拍摄的表面区域图像来检索有关水星旋转和释放参数的信息。此分析需要使用水星自转的精确模型,以将观测到的地标位置与行星自由度相关联。然后可以使用最大似然估计器从观察中得出模型参数。航天器位置,航天器姿态,成像地标位置和相机固有参数的不确定性会导致估计参数的总体不确定性。实验的仿真和不确定性分析表明,只需少量的地标/图像,就可以测量整个行星的自由度。该分析还为更好地设计实验以实现其科学目标提供了支持。

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