Rapid Design and Exploration of High-Fidelity Low-Thrust Transfers to the Moon

ieee aerospace conference(2020)

引用 3|浏览3
暂无评分
摘要
Spiral trajectories to the Moon present a difficult trajectory design problem. In this paper we show that the well-known Q-Law guidance algorithm can be leveraged to rapidly produce near optimal, high fidelity trajectories. By combining forward and backward propagated Q-Law, continuous trajectories are generated from an Earth parking orbit to a target Lunar orbit. The Q-Law result can then be refined using direct collocation. To demonstrate this process, we solve a problem inspired by the SMART-1 mission and compare to literature results. Then, an ESPA-class mission scenario is analyzed. We demonstrate that this technique can be used to efficiently explore the trajectory trade space and provide suitable initial guesses for direct optimization.
更多
查看译文
关键词
direct optimization,trajectory trade space,ESPA-class mission scenario,literature results,SMART-1 mission,direct collocation,Q-Law result,target Lunar orbit,Earth parking orbit,continuous trajectories,high fidelity trajectories,optimal fidelity trajectories,Q-Law guidance algorithm,difficult trajectory design problem,spiral trajectories,Moon,high-fidelity low-thrust transfers,rapid design
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要