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Hybrid GEO and IGSO Satellite Constellation Design with Ground Supporting Constraint for Space Information Networks

机译:空间信息网络地面支持约束的混合GEO和IGSO卫星星座设计

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In space information networks, satellites are generally in high speed orbit motion. In order to obtain better spacial and temporal coverage performance, satellites should cooperate with each other as a constellation. Previous works on constellations mainly focus on global seamless coverage using fewer satellites. However, like most countries, it is hard for China to build ground stations in overseas, and the geostationary Earth orbit position resource is scarce. In this paper, we investigate the constellation design problem with restricted ground supporting. We first proposes a “backbone network + enhanced network” hybrid constellation design approach. Then a hybrid “4GEO+SIGSO” constellation is designed using the proposed approach, and the coverage performance of this constellation is analyzed in detail. Simulation results show the proposed approach can realize global seamless coverage only using a small number of satellites. Furthermore, the proposed hybrid constellation meets the coverage demand only relies on ground stations inside China.
机译:在空间信息网络中,卫星通常处于高速轨道运动中。为了获得更好的空间和时间覆盖性能,卫星应相互协作,共同组成一个星座。先前有关星座的工作主要集中在使用更少卫星的全球无缝覆盖上。但是,像大多数国家一样,中国很难在海外建立地面站,地球静止地球轨道位置资源也很稀缺。在本文中,我们研究了受限制地面支撑的星座设计问题。我们首先提出一种“骨干网+增强型网络”混合星座设计方法。然后使用提出的方法设计了一个混合的“ 4GEO + SIGSO”星座,并详细分析了该星座的覆盖性能。仿真结果表明,该方法仅需使用少量卫星就可以实现全球无缝覆盖。此外,拟议的混合星座仅依靠中国境内的地面站就能满足覆盖需求。

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