arXiv:2606.12667cs.NIcs.AI2026-06被引 1

提出新方法优化低轨卫星地面站布局,提升数据传输效率

Free-Placement Optimization of Ground Station Locations for Low-Earth Orbit Satellites

论文配图:Free-Placement Optimization of Ground Station Locations for Low-Earth Orbit Satellites
图 1 · 摘自论文原文
  • 分两阶段迭代优化,兼顾空间连续性与全局搜索
  • 比传统方法少5倍计算量,下行吞吐量最高提升13%
  • 适合需高效部署或受限于现有基建的卫星网络规划

快速扩张的低地球轨道卫星星座对地面网络提出更高要求,推动更高效的地面站网络设计。现有方法局限于预设站点,限制了优化空间。本文提出SCORE(基于精炼与评估的序列循环优化),一种在地球连续空间上进行自由选址的两阶段优化方法。通过序列坐标选择与循环精炼,有效应对高维、非凸及局部极小等挑战。在Kongsberg卫星服务和世界航天港协会的站点数据基础上,对比差分进化(DE)和整数规划方法,在两家商业遥感星座(Capella Space、ICEYE)及一个合成Walker-Star星座上测试显示,SCORE收敛所需函数评估次数最多减少5倍,下行吞吐量最高提升13%。相比固定站点方法,无约束的SCORE使总下行量提升最多达15%,建立灵活布局的性能基准;受基础设施约束的SCORE仍保留该增益的92%以上,仅允许在现有光纤与电力设施附近选址。还分析了扩建旧站与新建站点的权衡,为未来星座运营网络设计提供依据。

原文摘要 · Abstract (English)

Rapidly expanding low Earth orbit satellite constellations are placing increasing demands on terrestrial ground networks, motivating the development of more efficient ground station network designs. Current approaches select sites from predefined locations, limiting optimization to existing infrastructure and constraining performance. In contrast, free-placement optimization operates over a continuous spatial domain on Earth, broadening the search space and allowing higher-throughput configurations at the cost of potentially requiring new infrastructure deployment. In this work, we introduce SCORE (Sequential Cyclic Optimization via Refinement & Evaluation), a two-stage free-placement method for ground station design. SCORE combines sequential coordinate selection with cyclic refinement to manage high-dimensionality, non-convexity, and local minima that challenge global optimizers. We benchmark SCORE against one-shot methods such as differential evolution (DE) and integer programming approaches using locations from Kongsberg Satellite Services and the World Teleport Association. Tests across two commercial Earth observation constellations (Capella Space and ICEYE) and one synthetic Walker-Star constellation show that SCORE requires up to 5x fewer function evaluations to converge relative to DE while improving downlink throughput by up to 13%. Compared to fixed-site methods, unconstrained SCORE achieves up to 15% greater total downlink, establishing a strong empirical performance benchmark for flexible placement; infrastructure-constrained SCORE retains over 92% of this gain while restricting placement to within proximity of existing fiber and power infrastructure. We also explore trade-offs between expanding existing stations and deploying new sites, informing future ground network design for operational constellations.

卫星网络优化算法地面站布局

Thank you to arXiv for use of its open access interoperability. PaperDance 不是 arXiv 官方产品;中文卡片由大模型生成,请以原文为准。