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引用本文:贺波勇,沈红新,彭祺擘.近地一次环月两次交会的载人登月任务规划[J].国防科技大学学报,2020,42(6):19-30.[点击复制]
HE Boyong,SHEN Hongxin,PENG Qibo.Manned lunar mission planning based on once low earth orbit and twice low lunar orbit rendezvous and dockings[J].Journal of National University of Defense Technology,2020,42(6):19-30[点击复制]
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近地一次环月两次交会的载人登月任务规划
贺波勇1,沈红新1,彭祺擘2
(1. 西安卫星测控中心 宇航动力学国家重点实验室, 陕西 西安 710043;2. 载人航天总体研究论证中心, 北京 100094)
摘要:
    针对近地一次环月两次交会的载人登月任务飞行阶段多、周期长、约束复杂,导致各阶段飞行窗口与轨道衔接匹配复杂的难题,提出分层分解、正逆向结合的全任务标称飞行窗口与轨道衔接设计策略。介绍近地一次环月两次交会的载人登月任务飞行模式特点和应用前景,假定任务基本需求与工程约束,仿真验证所提方法的有效性,可以快速规划出近地一次环月两次交会的载人登月任务飞行轨道与窗口。
关键词:  载人登月  任务规划  轨道设计  窗口搜索  近地交会  环月交会
DOI:10.11887/j.cn.202006003
投稿日期:2019-08-19  
基金项目:国家自然科学基金资助项目(11902362)
Manned lunar mission planning based on once low earth orbit and twice low lunar orbit rendezvous and dockings
HE Boyong1, SHEN Hongxin1, PENG Qibo2
(1. State Key Laboratory of Astronautic Dynamics, Xi′an Satellite Control Center, Xi′an 710043, China;2. Manned Space System Research Center, Beijing 100094, China)
Abstract:
    Aiming at the complex problem of matching flight windows and orbits connection due to the multiple flight stages, long duration and complicated constraints of the manned lunar mission based on once LEO (low earth orbit) and twice LLO (low lunar orbit) RVDs (rendezvous and dockings), a design strategy of connecting the full-mission nominal flight windows and orbits with the combining layered decomposition and the forward and reverse design approach were proposed. The characteristics and application prospect of the manned lunar mission based on once LEO and twice LLO RVDs were introduced, and the basic mission requirements and engineering constraints were supposed. The effectiveness of the proposed method was verified by simulation. The nominal flight orbital elements and windows of the manned lunar mission based on once LEO and twice LLO RVDs can be responded rapidly.
Key words:  manned lunar  mission planning  orbit design  window searching  low earth orbit rendezvous and docking  low lunar orbit rendezvous and docking
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