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Orbital Control of a Solar Sail Using Reflectivity Control Devices Near the Earth-Moon L2 Point

机译:使用靠近地球L2点附近的反射控制装置的轨道控制太阳帆

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For full-scale lunar explorations, it is essential to establish constant communication with the far side of the Moon. One idea to accomplish this is telecommunication via a satellite orbiting the L2 point. However, because orbits around the L2 point are unstable, active control is necessary. In this paper, we propose an orbital design and control laws for a combination of solar electric propulsion and a solar sail equipped with reflectivity control devices (RCDs). An artificial halo orbit that takes the solar radiation pressure into consideration is designed, and the modeling error is calculated. Feedback control laws to maintain the orbit are designed using a backstepping method. From the numerical simulations, it is shown that the utilization of RCDs reduces the fuel consumption required to maintain the orbit.
机译:对于满量程的月球探索,必须与月球的远侧建立不断的沟通。一个想法要完成这一点是通过卫星轨道轨道的电信。但是,由于L2点周围的轨道不稳定,因此需要主动控制。在本文中,我们提出了一种轨道设计和控制法,用于太阳能电动推进器和配备有反射率控制装置(RCD)的太阳能帆的组合。设计了考虑太阳辐射压力的人造光环轨道,并计算建模误差。反馈控制定律以维护轨道的使用反向梗方法设计。根据数值模拟,结果表明,RCD的利用率降低了维持轨道所需的燃料消耗。

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