arXiv · 1606.05841
Planetary Radio Interferometry and Doppler Experiment (PRIDE) technique: A test case of the Mars Express Phobos fly-by
Abstract
The closest ever fly-by of the Martian moon Phobos, performed by the European Space Agency's Mars Express spacecraft, gives a unique opportunity to sharpen and test the Planetary Radio Interferometry and Doppler Experiments (PRIDE) technique in the interest of studying planet - satellite systems. The aim of this work is to demonstrate a technique of providing high precision positional and Doppler measurements of planetary spacecraft using the Mars Express spacecraft. The technique will be used in the framework of Planetary Radio Interferometry and Doppler Experiments in various planetary missions, in particular in fly-by mode. We advanced a novel approach to spacecraft data processing using the techniques of Doppler and phase-referenced very long baseline interferometry spacecraft tracking. We achieved, on average, mHz precision (30 {\mu}m/s at a 10 seconds integration time) for radial three-way Doppler estimates and sub-nanoradian precision for lateral position measurements, which in a linear measure (at a distance of 1.4 AU) corresponds to ~50 m.
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Dmitry A. Duev, Sergei V. Pogrebenko, Giuseppe Cimò, Guifré Molera Calvés, Tatiana M. Bocanegra Bahamón, Leonid I. Gurvits, Mark M. Kettenis, Joseph Kania, Valeriu Tudose, Pascal Rosenblatt, Jean-Charles Marty, Valery Lainey, Pablo de Vicente, Jonathan Quick, Marisa Nickola, Alexander Neidhardt, Gerhard Kronschnabl, Christian Plötz, Rüdiger Haas, Michael Lindqvist, Andrea Orlati, Alexander V. Ipatov, Mikhail A. Kharinov, Andrey G. Mikhailov, Jim Lovell, Jamie McCallum, Jamie Stevens, Sergei A. Gulyaev, Tim Natush, Stuart Weston, Weihua Wang, Bo Xia, Wenjun Yang, Long-Fei Hao, Juha Kallunki, Olivier Witasse. 2016-06-19. Planetary Radio Interferometry and Doppler Experiment (PRIDE) technique: A test case of the Mars Express Phobos fly-by. https://doi.org/10.1051/0004-6361%2F201628869
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