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Open-loop and closed-loop attitude dynamics and controls of miniature spacecraft using pseudowheels

机译:使用伪轮的微型航天器的开环和闭环姿态动力学及控制

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摘要

This paper presents open-loop and closed-loop attitude control strategies of miniature spacecraft using pseudowheels, which are composed of multiple bimorphs and are mounted on the three principal axes of the spacecraft. Due to the conservation of angular momentum, the vibrations of the bimorph excited by applied voltages can rotate the spacecraft. By applying a sequence of rotations along the three axes, the attitude of the spacecraft can be changed. The modeling of the spacecraft-pseudowheel system includes the inverse piezoelectric effect and the gravity gradient torques. Since one cannot guarantee that a solution will be found for every rotation sequence, this paper proposes an approach to solve this problem. In addition, the voltages applied to the bimorphs are reduced to meet the specifications of the voltage amplifiers. Furthermore, a closed-loop attitude control strategy is presented to reduce the applied voltages and to compensate the attitude error caused by the gravity gradient torques.
机译:本文提出了使用伪轮的微型航天器的开环和闭环姿态控制策略,该伪轮由多个双压电晶片组成,并安装在航天器的三个主轴上。由于角动量的守恒,施加电压激发的双压电晶片的振动会使航天器旋转。通过沿三个轴进行一系列旋转,可以改变航天器的姿态。航天器-伪轮系统的建模包括逆压电效应和重力梯度转矩。由于不能保证为每个旋转序列都能找到一种解决方案,因此本文提出了一种解决这一问题的方法。另外,施加到双压电晶片的电压被降低以满足电压放大器的规格。此外,提出了一种闭环姿态控制策略,以减少施加的电压并补偿由重力梯度转矩引起的姿态误差。

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