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Development of Cislunar Space Logistics Networks for Satellite Constellation Support Using Event-Driven Generalized Multi-Commodity Network Flows

机译:使用事件驱动的广义多商品网络流开发支持卫星星座的Cislunar空间物流网络

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As space becomes an increasingly congested domain, the risk of damage to satellite constellations is increasing. In response, there is an increasing need for capabilities for unmanned repair, refueling, and reconstitution (R3) of those constellations. Cislunar orbits offer a promising storage and low-cost transfer solution for on-orbit service vehicles and replacement satellites to leverage those capabilities. This research makes use of mixed-integer linear programming-based logistics models to determine the situations in which a cislunar mission architecture would offer a cost-effective alternative to Earth-based R3. The network models presented in this research make use of the latest developments in Event-Driven Generalized Multi-Commodity Network Flows (ED-GMCNF), a new method of optimization that enables variable time steps between events. This research combines a new version of an ED-GMCNF with cislunar trajectory optimization to evaluate both the feasibility of cislunar orbits as well as the potential effects of lunar fuel production on R3 costs. This investigation finds, through an exhaustive numerical simulation campaign, that cislunar logistics networks provide cost-effective means of R3 regiments for Earth-orbiting and cislunar satellites when a lunar fuel supply is taken into consideration. The ED-GMCNF methodology also offers a promising foundation for future work in the mission planning field.
机译:随着空间变得越来越拥挤,破坏卫星星座的风险正在增加。作为响应,对这些星座的无人维修,加油和重建(R3)能力的需求日益增长。 Cislunar轨道为在轨服务车辆和替代卫星提供了有前途的存储和低成本传输解决方案,以利用这些功能。这项研究利用基于混合整数线性规划的后勤模型来确定一种情况,在这种情况下,单月任务架构将为基于地球的R3提供经济高效的替代方案。本研究中介绍的网络模型利用了事件驱动的通用多商品网络流(ED-GMCNF)的最新发展,它是一种新的优化方法,可以使事件之间的时间步长可变。这项研究将ED-GMCNF的新版本与顺月轨迹优化相结合,以评估顺月轨道的可行性以及月球燃料生产对R3成本的潜在影响。这项调查通过详尽的数值模拟研究发现,当考虑到月球燃料供应时,顺月物流网络为地球轨道和顺月卫星提供了具有成本效益的R3团方式。 ED-GMCNF方法论还为任务规划领域的未来工作提供了有希望的基础。

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