为低轨卫星任务优化地面站选择,降低通信成本并提升数据传输效率。
Optimal Ground Station Selection for Low-Earth Orbiting Satellites
- 基于整数规划建模,可灵活设定数据下传量、成本等目标
- 在不同星座规模下验证,性能优于仅用一两个服务商的传统做法
- 适合需要精细化控制通信成本与覆盖的商业卫星任务
本文针对低地球轨道(LEO)航天任务中的地面站最优选择问题,提出一种通用优化框架,使任务设计者能够精确规划地面段性能与成本。随着越来越多任务采用地面站即服务(GSaaS)模式以降低成本并扩展网络规模,如何选择最优服务商和站点位置成为新挑战。本文将该问题建模为优化问题,使用整数规划(IP)求解,并引入代理优化方法,在缩减的时间域上求解以应对计算扩展难题。通过随机生成的不同规模LEO星座测试了两种IP建模方式,对比了Atlas Space Operations、AWS Ground Station、Azure Orbital Ground Station、KSAT、Leaf Space和Viasat Real-Time Earth等商业GSaaS网络。结果表明,相比传统仅接入一或两家服务商的做法,本方法在满足总数据下传量、总成本、运营成本及最大通信间隙等约束条件下,显著提升整体性能。
原文摘要 · Abstract (English)
This paper presents a solution to the problem of optimal ground station selection for low-Earth orbiting (LEO) space missions that enables mission operators to precisely design their ground segment performance and costs. Space mission operators are increasingly turning to Ground-Station-as-a-Service (GSaaS) providers to supply the terrestrial communications segment to reduce costs and increase network size. However, this approach leads to a new challenge of selecting the optimal service providers and station locations for a given mission. We consider the problem of ground station selection as an optimization problem and present a general solution framework that allows mission designers to set their overall optimization objective and constrain key mission performance variables such as total data downlink, total mission cost, recurring operational cost, and maximum communications time-gap. We solve the problem using integer programming (IP). To address computational scaling challenges, we introduce a surrogate optimization approach where the optimal station selection is determined based on solving the problem over a reduced time domain. Two different IP formulations are evaluated using randomized selections of LEO satellites of varying constellation sizes. We consider the networks of the commercial GSaaS providers Atlas Space Operations, Amazon Web Services (AWS) Ground Station, Azure Orbital Ground Station, Kongsberg Satellite Services (KSAT), Leaf Space, and Viasat Real-Time Earth. We compare our results against standard operational practices of integrating with one or two primary ground station providers.
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