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FULLY AUTOMATED MISSION PLANNING AND CAPACITY ANALYSIS TOOL FOR THE DEIMOS-2 AGILE SATELLITE

机译:用于Deimos-2敏捷卫星的全自动任务规划和容量分析工具

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The DEIMOS-2 mission, launched in June 2014 and currently carrying out routine operations, is aimed at operating an agile small satellite for high-resolution Earth Observation applications. The spacecraft can be steered to accurately point the payload up to 45° off-nadir. The platform agility makes mission planning a complex optimization problem, which is cumbersome for human operators. Automation emerges as a key enabler for the mission planning and exploitation process. This paper presents the up-to-date version of the "Capacity Analysis and Mission Planning Tool" developed by DEIMOS to produce feasible acquisition sequences from a set of user areas of interest, exploiting the full agility of the satellite around the three axes. By feasible acquisition sequences, we mean they do not overlap and they fulfil the platform constraints: attitude manoeuvring agility and stability requirements, on-board memory and downlink, power production and battery capacity. Besides the significant workflow enhancement obtained by the full automation of mission planning, the tool is able to solve a highly combinatorial problem with many degrees of freedom, optimizing the mission return by repeating the scheduling exercise and selecting the best-performing mission timeline. In addition, the tool can simulate the execution of user-defined sequences of spacecraft operations (i.e., mission timelines), thanks to a high-fidelity system simulator, and detect any possible resource conflict in terms of agility, power and memory.
机译:2014年6月推出的Deimos-2任务,目前正在进行日常行动,旨在为高分辨率的地球观测应用运行敏捷的小卫星。可以引用航天器以准确地将有效载荷的有效载荷指向45°Off-Nadir。平台敏捷性使得任务规划成为一个复杂的优化问题,这对于人类运营商来说是麻烦的。自动化作为特派团规划和开发过程的关键推动者出现。本文介绍了Deimos开发的“容量分析和任务规划工具”的最新版本,从一组用户的感兴趣区域产生可行的采集序列,利用三个轴周围的卫星的全部敏捷性。通过收购可行序列,我们指的是他们不重叠,它们满足平台的限制:姿态机动灵活性和稳定性的要求,板载内存和下行链路,电力生产和电池容量。除了通过任务规划的全自动化获得显著的工作流程强化,该工具能够解决一个高度组合的问题很多自由度,优化重复调度演习,并选择表现最佳的任务时间表的任务回报。此外,由于高保真系统模拟器,该工具可以模拟用户定义的航天器操作序列(即,任务时间表),并在敏捷,电源和内存方面检测任何可能的资源冲突。

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