Solar Probe Plus: Mission design challenges and trades

维纳斯 弹道 木星(火箭家族) 航空航天工程 行星 黄道 太阳系 天体生物学 美国宇航局深空网络 物理 土星 轨道(动力学) 天文 太空探索 计算机科学 系统工程 太阳风 工程类 航天器 磁场 量子力学
作者
Yanping Guo
出处
期刊:Acta Astronautica [Elsevier BV]
卷期号:67 (9-10): 1063-1072 被引量:16
标识
DOI:10.1016/j.actaastro.2010.06.007
摘要

NASA plans to launch the first mission to the Sun, named Solar Probe Plus, as early as 2015, after a comprehensive feasibility study that significantly changed the original Solar Probe mission concept. The original Solar Probe mission concept, based on a Jupiter gravity assist trajectory, was no longer feasible under the new guidelines given to the mission. A complete redesign of the mission was required, which called for developing alternative trajectories that excluded a flyby of Jupiter. Without the very powerful gravity assist from Jupiter it was extremely difficult to get to the Sun, so designing a trajectory to reach the Sun that is technically feasible under the new mission guidelines became a key enabler to this highly challenging mission. Mission design requirements and challenges unique to this mission are reviewed and discussed, including various mission scenarios and six different trajectory designs utilizing various planetary gravity assists that were considered. The V5GA trajectory design using five Venus gravity assists achieves a perihelion of 11.8 solar radii (RS) in 3.3 years without any deep space maneuver (DSM). The V7GA trajectory design reaches a perihelion of 9.5 RS using seven Venus gravity assists in 6.39 years without any DSM. With nine Venus gravity assists, the V9GA trajectory design shows a solar orbit at inclination as high as 37.9° from the ecliptic plane can be achieved with the time of flight of 5.8 years. Using combined Earth and Venus gravity assists, as close as 9 RS from the Sun can be achieved in less than 10 years of flight time at moderate launch C3. Ultimately the V7GA trajectory was chosen as the new baseline mission trajectory. Its design allowing for science investigation right after launch and continuing for nearly 7 years is unprecedented for interplanetary missions. The redesigned Solar Probe Plus mission is not only feasible under the new guidelines but also significantly outperforms the original mission concept in both technical implementation and scientific returns.

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