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Periodic orbits of solar sail equipped with reflectance control device in Earth-Moon system

机译:太阳能帆的周期性轨道配备了地球系统中的反射控制装置

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摘要

In this paper, families of Lyapunov and halo orbits are presented with a solar sail equipped with a reflectance control device in the Earth-Moon system. System dynamical model is established considering solar sail acceleration, and four solar sail steering laws and two initial Sunsail configurations are introduced. The initial natural periodic orbits with suitable periods are firstly identified. Subsequently, families of solar sail Lyapunov and halo orbits around the L-1 and L-2 points are designed with fixed solar sail characteristic acceleration and varying reflectivity rate and pitching angle by the combination of the modified differential correction method and continuation approach. The linear stabilities of solar sail periodic orbits are investigated, and a nonlinear sliding model controller is designed for station keeping. In addition, orbit transfer between the same family of solar sail orbits is investigated preliminarily to showcase reflectance control device solar sail maneuver capability.
机译:在本文中,Lyapunov和Halo轨道的家庭呈现出在地球系统中配备有反射率控制装置的太阳能帆。考虑到太阳能帆加速度建立了系统动态模型,并引入了四种太阳能帆转向规律和两个初始防晒配置。首先确定具有合适时期的初始天然周期性轨道。随后,L-1和L-2点周围的太阳能帆Lyapunov和光环轨道的家庭通过修改的差分校正方法和延续方法的组合设计了具有固定的太阳帆特性加速和变化的反射率和俯仰角。研究了太阳帆周期性轨道的线性稳定性,并且设计了一个非线性滑动模型控制器,用于站保持。此外,在初步调查同一族太阳帆轨道之间的轨道转移,以展示反射率控制装置太阳能帆操纵能力。

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