English

Optimal Replenishment Strategy for Satellite Constellation with Dual Supply Modes

Optimization and Control 2025-09-17 v2

Abstract

This paper proposes a novel inventory management model for the replenishment strategy of a satellite mega-constellation incorporating dual supply modes: normal and auxiliary. The proposed framework employs an indirect channel for normal supply, wherein spare satellites are initially injected into a parking orbit before transferring to the target orbital plane via propulsion systems and orbital perturbations. Conversely, the auxiliary supply mode utilizes a direct channel, injecting spare satellites immediately into their designated orbital planes. The inventory management model is constructed using parametric replenishment policies: (s,Q)\left(s,Q\right) and (R1,R2,Q1,Q2)\left(R_1,R_2,Q_1,Q_2\right) with a time window. Following this model, two optimization problems are addressed to construct the supply chain for satellite mega-constellation replenishment and to evaluate its performance. These are decision-making contexts from the perspectives of constellation operators and launch service providers. The case study showcases the practical applicability of the proposed model and optimization problems, yielding valuable insights for stakeholders in the spaceborne industry.

Keywords

Cite

@article{arxiv.2408.09696,
  title  = {Optimal Replenishment Strategy for Satellite Constellation with Dual Supply Modes},
  author = {Jaewoo Kim and Jaemyung Ahn and Taehyun Sung},
  journal= {arXiv preprint arXiv:2408.09696},
  year   = {2025}
}

Comments

41 pages, 10 figures

R2 v1 2026-06-28T18:16:17.591Z