论文标题
Ariel任务计划。安排一千个系外行星的调查
Ariel mission planning. Scheduling the survey of a thousand exoplanets
论文作者
论文摘要
自动调度技术已成为有效规划大型天文学调查的关键工具。正在设计和开发一种特定的调度方法,该方法是为基于混合元元式算法的大气遥感外部大型调查(ARIEL)任务计划而设计和开发的,具有全球优化能力,以确保获得满足的结果,以满足所有任务约束。我们使用这种方法来模拟Ariel任务计划,评估其科学目标的可行性,并研究不同科学方案的结果。我们得出的结论是,Ariel将能够实现科学目标,即表征约1000个系外行星的气氛,总暴露时间约占Mission Lifetime的75-80%。我们证明,有可能包括目标样本的相位曲线观测值,或增加任务寿命内研究的系外行星的数量。最后,大约12-15%的时间仍然可以用于非时期约束观察结果。
Automatic scheduling techniques are becoming a crucial tool for the efficient planning of large astronomical surveys. A specific scheduling method is being designed and developed for the Atmospheric Remote-sensing Infrared Exoplanet Large-survey (Ariel) mission planning based on a hybrid meta-heuristic algorithm with global optimization capability to ensure obtaining satisfying results fulfilling all mission constraints. We used this method to simulate the Ariel mission plan, to assess the feasibility of its scientific goals, and to study the outcome of different science scenarios. We conclude that Ariel will be able to fulfill the scientific objectives, i.e. characterizing ~1000 exoplanet atmospheres, with a total exposure time representing about 75-80% of the mission lifetime. We demonstrate that it is possible to include phase curve observations for a sample of targets or to increase the number of studied exoplanets within the mission lifetime. Finally, around 12-15% of the time can still be used for non-time constrained observations.