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Optimal trajectory design and analysis for soft landing on the moon from lunar parking orbits

机译:月球从月球从月亮锻炼轨道轨道轨道轨迹的最佳轨迹设计与分析

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This article studies the optimal control solution of the Moon-Lander problem. The main purpose of this article is to investigate the optimal strategy for trajectory design to ensure the soft landing of the lander from the Lunar parking orbit to the lunar surface with minimum consumption of fuel. The trajectory design of lunar lander is studied via two cases by formulating the optimal control problems, where specific requirements of this soft landing problem are all incorporated in the problem formulation. To analyse the proposed optimal strategies for a soft landing the paper briefly illustrates the numerical simulation results and it shows that the required velocity for the soft landing is achieved with minimum fuel consumption. The investigated computational methods for the optimal solutions of the Moon-Lander problem in both two cases are conceptually simple and efficient.
机译:本文研究了月球着陆问题的最佳控制解决方案。本文的主要目的是研究轨迹设计的最佳策略,以确保着陆器从月球停车轨道到月球表面的柔软着陆,以最小的燃料消耗。通过制定最佳控制问题,通过两个案例研究了月球兰机的轨迹设计,其中该软着陆问题的特定要求全部包含在问题配方中。为了分析所提出的柔软着陆的最佳策略,纸张简要说明了数值模拟结果,并表明燃料消耗最小的软着陆所需的速度。两个案例中月球着陆问题的最佳解决方案的调查计算方法在概念上简单富有高效。

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