Attitude Maneuvering and Vibration Damping of Flexible Spacecraft via Robust Adaptive Backstepping Technique

Zhu Liang-kuan;Ma Guang-fu and Hu Qing-lei

Journal of Vibration and Shock ›› 2009, Vol. 28 ›› Issue (2) : 132-136.

PDF(1255 KB)
PDF(1255 KB)
Journal of Vibration and Shock ›› 2009, Vol. 28 ›› Issue (2) : 132-136.
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Attitude Maneuvering and Vibration Damping of Flexible Spacecraft via Robust Adaptive Backstepping Technique

  • Zhu Liang-kuan, Ma Guang-fu and Hu Qing-lei
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Abstract

Abstract: A dual-stage robust design method is concerned for the rotational maneuver and vibration stabilization of a flexible spacecraft. Based on the backstepping-based adaptive technique, a new attitude control law for attitude maneuvering is derived to control the attitude motion of spacecraft, in which the asymptotic stability is guaranteed by using Lyapunov analysis. Furthermore, for actively suppressing the induced vibration, strain rate feedback control compensator is designed using piezoelectric materials as additional sensors and actuators. Numerical simulations are performed to show that both maneuvering and vibration suppression can be accomplished effectively.

Key words

flexible spacecraft / attitude maneuvering / vibration damping / backstepping / adaptive control

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Zhu Liang-kuan;Ma Guang-fu and Hu Qing-lei. Attitude Maneuvering and Vibration Damping of Flexible Spacecraft via Robust Adaptive Backstepping Technique[J]. Journal of Vibration and Shock, 2009, 28(2): 132-136
PDF(1255 KB)

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