Modeling and Analysis of Flexible Solar Sail

Jiarui Zhang, Ruiyun Qi, B. Jiang
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Abstract

The paper presents a nonlinear dynamic model of flexible solar sail with elastic deformation and a stability analysis of the zero dynamics of model. Mathematical model based on the combination of hybrid coordinate method and the finite element method is used, to include the behavior of the vibration dynamics coupled to the solar sail. With both analytical and numerical results, it is shown that in the presence of elastic deformation, the zero dynamics of the coupled attitude-vibration model is stable only on the local compact set at its equilibrium point. This study demonstrates that the elastic deformation has a great impact on the state of the system, which needed to be considered in the design of controller. Then, a simple controller based on the backstepping method is proposed to complete the attitude maneuver of solar sail. A numerical simulation is used to verify the effectiveness of the controller.
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柔性太阳帆的建模与分析
本文建立了具有弹性变形的柔性太阳帆非线性动力学模型,并对模型的零动力学进行了稳定性分析。采用混合坐标法和有限元法相结合的数学模型,对太阳帆的振动动力学特性进行了分析。分析和数值结果表明,在存在弹性变形的情况下,姿态-振动耦合模型的零动力学仅在平衡点的局部紧集中稳定。研究表明,弹性变形对系统状态的影响很大,在控制器设计时需要考虑到这一点。在此基础上,提出了一种基于反步法的简单控制器来完成太阳帆的姿态机动。通过数值仿真验证了该控制器的有效性。
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