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Dynamic modeling and optimization for space logistics using time-expanded networks

机译:使用时间扩展网络的空间物流动态建模和优化

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This research develops a dynamic logistics network formulation for lifecycle optimization of mission sequences as a system-level integrated method to find an optimal combination of technologies to be used at each stage of the campaign. This formulation can find the optimal transportation architecture considering its technology trades over time. The proposed methodologies are inspired by the ground logistics analysis techniques based on linear programming network optimization. Particularly, the time-expanded network and its extension are developed for dynamic space logistics network optimization trading the quality of the solution with the computational load. In this paper, the methodologies are applied to a human Mars exploration architecture design problem. The results reveal multiple dynamic system-level trades over time and give recommendation of the optimal strategy for the human Mars exploration architecture. The considered trades include those between In-Situ Resource Utilization (ISRU) and propulsion technologies as well as the orbit and depot location selections over time. This research serves as a precursor for eventual permanent settlement and colonization of other planets by humans and us becoming a multi-planet species. (C) 2014 IAA. Published by Elsevier Ltd. All rights reserved.
机译:这项研究开发了用于任务序列生命周期优化的动态物流网络公式,作为系统级集成方法,以找到在战役各个阶段使用的最佳技术组合。考虑到其技术随着时间的推移,该公式可以找到最佳的运输体系结构。所提出的方法是基于线性规划网络优化的地面物流分析技术的启发。特别是,为动态空间物流网络优化开发了时间扩展网络及其扩展,以解决方案质量与计算量之间的交换。本文将这些方法论应用于人类火星探测建筑设计问题。结果揭示了随时间变化的多个动态系统级交易,并为人类火星探索架构的最佳策略提供了建议。所考虑的交易包括就地资源利用(ISRU)和推进技术之间的交易,以及随着时间推移对轨道和仓库位置的选择。这项研究为人类最终永久定居和定居其他星球奠定了先驱,而我们成为了多行星物种。 (C)2014 IAA。由Elsevier Ltd.出版。保留所有权利。

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