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Jupiter system exploration trajectory design: Summary of the winning solution at CTOC10

机译:木星系统探索轨迹设计:CTOC10获奖解决方案摘要

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摘要

This paper presents the methods and results submitted by the winning team from Harbin Institute of Technology of the 10th China Trajectory Optimization Competition (CTOC10). The problem posed by CTOC10 requires exploring the Jupiter system using a combined spacecraft. The exploration mission consists of the detection of Jupiter’s magnetic field and an exploration of the Galilean moons. The mission is completed through three steps: problem analysis, orbital design process, and data processing. The orbital design process is mainly divided into four parts, namely, repeating ground-track orbit design, gravity-assisted orbit design, initial orbit parameter selection, and local optimization adjustment. The designed orbit is then evaluated using a heuristic optimization algorithm applied during the data processing. Finally, six full-coverage observations of Jupiter’s magnetic field are realized under the constraints of fuel and time. The final index of the submitted result is 357.8067.
机译:本文介绍了哈尔滨工业研究所第十次巡回赛竞争赛中获奖团队(CTOC10)提交的方法和结果。 CTOC10提出的问题需要使用组合的航天器探索木星系统。 勘探任务包括检测木星的磁场和伽利姑娘的探索。 任务通过三个步骤完成:问题分析,轨道设计过程和数据处理。 轨道设计过程主要分为四个部分,即重复地面轨道轨道设计,重力辅助轨道设计,初始轨道参数选择和局部优化调整。 然后使用在数据处理期间应用的启发式优化算法评估设计的轨道。 最后,在燃料和时间的限制下实现了Jupiter的磁场的六种全覆盖观察。 提交结果的最终指数为357.8067。

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