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Signatures of the Martian rotation parameters in the Doppler and range observables

机译:多普勒火星自转参数的签名和可观测范围

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The position of a Martian lander is affected by different aspects of Mare rotational motions: the nutations, the precession, the length-of-day variations and the polar motion. These various motions have a different signature in a Doppler observable between the Earth and a lander on Mars' surface. Knowing the correlations between these signatures and the moments when these signatures are not null during one day or on a longer timescale is important to identify strategies that maximize the geophysical return of observations with a geodesy experiment, in particular for the ones on-board the future NASA InSight or ESA-Roscosmos ExoMars2020 missions. We provide first-order formulations of the signature of the rotation parameters in the Doppler and range observables. These expressions are functions of the diurnal rotation of Mars, the lander position, the planet radius and the rotation parameter. Additionally, the nutation signature in the Doppler observable is proportional to the Earth declination with respect to Mars. For a lander on Mars close to the equator, the motions with the largest signature in the Doppler observable are due to the length-of-day variations, the precession rate and the rigid nutations. The polar motion and the liquid core signatures have a much smaller amplitude. For a lander closer to the pole, the polar motion signature is enhanced while the other signatures decrease. We also numerically evaluate the amplitudes of the rotation parameters signature in the Doppler observable for landers on other planets or moons.
机译:火星着陆器的位置受母马旋转运动的不同方面的影响:章动,进动,昼长变化和极运动。这些不同的运动在地球和火星表面的着陆器之间的多普勒观测中具有不同的特征。了解这些签名与一天或更长时间内这些签名不为零的时刻之间的相关性,对于确定能够通过大地测量实验(尤其是对于未来的大地测量实验)来最大化观测的地球物理回报的策略非常重要。 NASA InSight或ESA-Roscosmos ExoMars2020任务。我们提供了多普勒和距离观测值中旋转参数签名的一阶公式。这些表达式是火星昼夜旋转,着陆器位置,行星半径和旋转参数的函数。此外,多普勒观测到的章动特征与地球相对于火星的磁偏角成正比。对于火星上靠近赤道的着陆器来说,在多普勒观测中具有最大特征的运动是由于日长变化,进动率和刚性章动引起的。极性运动和液芯签名的幅度要小得多。对于离杆更近的着陆器,极地运动信号增强,而其他信号减小。我们还通过数值评估了在其他行星或卫星上着陆器观测到的多普勒旋转参数签名的幅度。

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