调度(生产过程)
推进
推力
整数规划
期限(时间)
时间范围
计算机科学
弹道
线性规划
轨道(动力学)
轨迹优化
运筹学
航空航天工程
工程类
数学优化
运营管理
最优控制
数学
天文
物理
算法
量子力学
作者
Tristan Sarton du Jonchay,Hao Chen,Masafumi Isaji,Yuri Shimane,Koki Ho
摘要
This paper proposes an on-orbit servicing logistics optimization framework capable of performing the short-term operational scheduling and long-term strategic planning of sustainable servicing infrastructures that involve high-thrust, low-thrust, and/or multimodal servicers supported by orbital depots. The proposed framework generalizes the state-of-the-art on-orbit servicing logistics optimization method by incorporating user-defined trajectory models and optimizing the logistics operations with the propulsion technology and trajectory tradeoff in consideration. Mixed-integer linear programming is leveraged to find the optimal operations of the servicers over a given period, whereas the rolling horizon approach is used to consider a long time horizon accounting for the uncertainties in service demand. Several analyses are carried out to demonstrate the value of the proposed framework in automatically trading off the high- and low-thrust propulsion systems for both short-term operational scheduling and long-term strategic planning of on-orbit servicing infrastructures.
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