The dynamics of Cubesats carrying a drag balance instrument (DBI) for in situ atmosphere density measurements is analyzed. Atmospheric drag force is measured by the displacement of two light plates exposed to the incoming particle flow. This system is well suited for a distributed sensor network in orbit, to get simultaneous in situ local (non orbit averaged) measurements in multiple positions and orbit heights, contributing to the development and validation of global atmosphere models. The implementation of the DBI leads to orbit normal pointing spinning two body system. The use of a spin-magnetic attitude control system is suggested, based only on magnetometer readings, contributing to making the system simple, inexpensive, and reliable. It is shown, by an averaging technique, that this system provides for orbit normal spin axis pointing. The effect of the coupling between the attitude dynamics and the DBI is evaluated, analyzing its frequency content and showing that no frequency components arise, affecting the DBI performance. The analysis is confirmed by Monte Carlo numerical simulation results.

Drag balance Cubesat attitude motion effects on in-situ thermosphere density measurements / Felicetti, Leonard; Santoni, Fabio. - In: ADVANCES IN SPACE RESEARCH. - ISSN 0273-1177. - STAMPA. - 54:Issue 3(2014), pp. 489-498. [10.1016/j.asr.2013.11.008]

Drag balance Cubesat attitude motion effects on in-situ thermosphere density measurements

FELICETTI, LEONARD;SANTONI, Fabio
2014

Abstract

The dynamics of Cubesats carrying a drag balance instrument (DBI) for in situ atmosphere density measurements is analyzed. Atmospheric drag force is measured by the displacement of two light plates exposed to the incoming particle flow. This system is well suited for a distributed sensor network in orbit, to get simultaneous in situ local (non orbit averaged) measurements in multiple positions and orbit heights, contributing to the development and validation of global atmosphere models. The implementation of the DBI leads to orbit normal pointing spinning two body system. The use of a spin-magnetic attitude control system is suggested, based only on magnetometer readings, contributing to making the system simple, inexpensive, and reliable. It is shown, by an averaging technique, that this system provides for orbit normal spin axis pointing. The effect of the coupling between the attitude dynamics and the DBI is evaluated, analyzing its frequency content and showing that no frequency components arise, affecting the DBI performance. The analysis is confirmed by Monte Carlo numerical simulation results.
2014
Drag balance Cubesats; Magnetic attitude control; Thermosphere density measurements; Two body system dynamics
01 Pubblicazione su rivista::01a Articolo in rivista
Drag balance Cubesat attitude motion effects on in-situ thermosphere density measurements / Felicetti, Leonard; Santoni, Fabio. - In: ADVANCES IN SPACE RESEARCH. - ISSN 0273-1177. - STAMPA. - 54:Issue 3(2014), pp. 489-498. [10.1016/j.asr.2013.11.008]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/561430
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