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Attitude Control of a 2U Cubesat by Magnetic and Air Drag Torques

机译:磁力和风阻力矩控制2U立方体的姿态

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This paper describes the development of a magnetic attitude control subsystem for a 2U cubesat. Due to the presence of gravity-gradient torques, the satellite dynamics are open-loop unstable near the desired pointing configuration. Nevertheless, the linearized time-varying system is completely controllable, under easily verifiable conditions, and the system's disturbance rejection capabilities can be enhanced by adding air drag panels exemplifying a beneficial interplay between hardware design and control. In this paper, conditions for the complete controllability for the case of a magnetically controlled satellite with passive air drag panels are developed, and simulation case studies with the linear quadratic regulator and model predictive control designs applied in combination with a nonlinear time-varying input transformation are presented to demonstrate the ability of the closed-loop system to satisfy mission objectives despite disturbance torques.
机译:本文介绍了用于2U cubesat的电磁姿态控制子系统的开发。由于重力梯度扭矩的存在,卫星动力学在所需的指向配置附近是开环不稳定的。然而,线性化时变系统在易于验证的条件下是完全可控的,并且通过增加空气拖曳板可以增强系统的抗干扰能力,这体现了硬件设计和控制之间的有益相互作用。本文研究了具有被动空气阻力板的磁控卫星情况的完全可控性条件,并结合线性二次调节器和模型预测控制设计以及非线性时变输入变换应用了模拟案例研究提出来证明尽管有干扰转矩,闭环系统仍能满足任务目标的能力。

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