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Small Satellite Operations Planning for Agile Disaster Response using Graph Theoretical Techniques

机译:使用曲线图理论技术进行敏捷灾害响应的小型卫星运营规划

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Agile, manoeuvrable, satellite constellations have the potential to fundamentally change space mission design by moving away from traditional missions, designed to address predicted demand, and instead providing responsive systems that can react to real-time events, such as natural disasters. The unique advantages of responsive constellations are enhanced by the use of small satellites, w hose short development times and low cost can offset the increased risk and shorter mission life inherent in the use of manoeuvrable spacecraft. In addition, newly developed. highly efficient propulsion systems can provide small satellites with agile manoeuvrability. This could enable agile satellite systems where efficient, low-thrust, responsive manoeuvres can be used to ensure rapid flyover of targets on Earth. The authors have previously developed a fully analytical method of designing such manoeuvres, which allows consideration of multiple targeting options, each with different flyover times, view angles, and propellant requirements. However, a long-term, holistic understanding of the concept of operations is required to effectively implement an agile satellite system. To facilitate this, the existing analytical methodology has been combined with graph theoretical techniques to allow the complex trade-space to be perceived as a graph. The connections in the graph represent possible manoeuvres and are rapidly traversed to identify favourable routes to achieve the desired goal. The effect of changes in mission priorities can be assessed by reweighting the graph, avoiding the need to recalculate the manoeuvre options. This work demonstrates that the proposed method can be successfully used to plan sequential flyovers of a moving target; in this case, a tropical storm. For the small spacecraft and low-thrust propulsion system considered, the possible changes in flyover time for each target are small, however, these small adjustments can be used to significantly improve the quality
机译:敏捷,卫星星座,卫星星座有可能通过远离传统的任务来源地改变空间任务设计,旨在解决预测的需求,而是提供对实时事件(例如自然灾害)反应的响应系统。通过使用小卫星的响应星座的独特优势,软管短暂开发时间和低成本可以抵消使用摩擦航天器使用中固有的增加的风险和更短的任务生活。此外,新开发。高效的推进系统可以提供具有敏捷机动性的小卫星。这可以使敏捷卫星系统能够高效,低推力,响应式动作,以确保地球上的目标快速天桥。作者以前已经开发出一种设计这种动作的完全分析方法,这允许考虑多个靶向选项,每个选项具有不同的天桥时间,视角和推进剂要求。然而,需要长期的整体理解操作概念来有效地实施敏捷卫星系统。为了促进这一点,现有的分析方法与图形理论技术相结合,以允许复杂的贸易空间被认为是图形的。图中的连接表示可能的操作,并迅速遍历以识别达到所需目标的有利路线。可以通过重新重复图形来评估任务优先事项的变化的影响,避免重新计算机动选项的需要。这项工作表明,所提出的方法可以成功地用于规划移动目标的顺序空间;在这种情况下,热带风暴。对于小型航天器和低推力推进系统考虑,每个目标的分流时间的可能变化很小,然而,这些小型调整可用于显着提高质量

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