English

MICROSCOPE Satellite and its Drag-Free and Attitude Control System

General Relativity and Quantum Cosmology 2020-12-23 v2 Instrumentation and Methods for Astrophysics Space Physics

Abstract

This paper focus on the description of the design and performance of the MICROSCOPE satellite and its Drag-Free and Attitude Control System (DFACS). The satellite is derived from CNES' Myriade platform family, albeit with significant upgrades dictated by the unprecedented MICROSCOPE's mission requirements. The 300kg drag-free microsatellite has completed its 2-year flight with higher-than-expected performances. Its passive thermal concept allowed for variations smaller than 1 μ\muK at the measurement frequency fEPf_{\rm{EP}}. The propulsion system provided a 6 axis continuous and very low noise thrust from zero to some hundreds of micronewtons. Finally, the performance of its DFACS (aimed at compensating the disturbing forces and torques applied to the satellite) is the finest ever achieved in low Earth orbit, with residual accelerations along the three axes are lower than 1012m/s210^{-12} {\rm m/s}^2 at fEPf_{\rm{EP}} over 8 days.

Cite

@article{arxiv.2012.06479,
  title  = {MICROSCOPE Satellite and its Drag-Free and Attitude Control System},
  author = {Alain Robert and Valerio Cipolla and Pascal Prieur and Pierre Touboul and Gilles Métris and Manuel Rodrigues and Yves André and Joel Bergé and Damien Boulanger and Ratana Chhun and Bruno Christophe and Pierre-Yves Guidotti and Emilie Hardy and Vincent Lebat and Thomas Lienart and Françoise Liorzou and Benjamin Pouilloux},
  journal= {arXiv preprint arXiv:2012.06479},
  year   = {2020}
}

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R2 v1 2026-06-23T20:54:27.274Z