This paper presents an attitude stabilization algorithm for a Low Earth Orbit (LEO) Earth-pointing spacecraft using magnetorquers as the only torque actuators and employing Model-Free Adaptive Control (MFAC) as the control algorithm. MFAC is a data-driven control algorithm that relies solely on input-output data from the plant. This paper validates the effectiveness of the proposed approach through numerical simulations in a specific case study. The simulations show that the proposed algorithm drives the spacecraft's attitude to three-axis stabilization in the orbital frame from arbitrary initial tumbling conditions. The numerical study also shows that the proposed control algorithm outperforms a model-based Proportional-Derivative (PD) control in terms of pointing accuracy at the expense of higher energy consumption.

Model-Free Adaptive Control for Attitude Stabilization of Earth-Pointing Spacecraft Using Magnetorquers / Celani, F.; Heydari, M.; Novinzadeh, A. B.. - In: AEROSPACE. - ISSN 2226-4310. - 12:3(2025). [10.3390/aerospace12030219]

Model-Free Adaptive Control for Attitude Stabilization of Earth-Pointing Spacecraft Using Magnetorquers

Celani F.;
2025

Abstract

This paper presents an attitude stabilization algorithm for a Low Earth Orbit (LEO) Earth-pointing spacecraft using magnetorquers as the only torque actuators and employing Model-Free Adaptive Control (MFAC) as the control algorithm. MFAC is a data-driven control algorithm that relies solely on input-output data from the plant. This paper validates the effectiveness of the proposed approach through numerical simulations in a specific case study. The simulations show that the proposed algorithm drives the spacecraft's attitude to three-axis stabilization in the orbital frame from arbitrary initial tumbling conditions. The numerical study also shows that the proposed control algorithm outperforms a model-based Proportional-Derivative (PD) control in terms of pointing accuracy at the expense of higher energy consumption.
2025
model-free adaptive control; spacecraft attitude stabilization; magnetorquer; PD control
01 Pubblicazione su rivista::01a Articolo in rivista
Model-Free Adaptive Control for Attitude Stabilization of Earth-Pointing Spacecraft Using Magnetorquers / Celani, F.; Heydari, M.; Novinzadeh, A. B.. - In: AEROSPACE. - ISSN 2226-4310. - 12:3(2025). [10.3390/aerospace12030219]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1736841
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