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Ultra-Dense LEO Satellite Constellation Design for Global Coverage in Terrestrial-Satellite Networks

机译:陆地卫星网络全球覆盖的超密集狮子座卫星星座设计

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Recently, the ultra-dense low earth orbit (LEO) satellite communication networks over high-frequency band have served as a potential solution for high-capacity backhaul data services. In this paper, we consider an ultra-dense LEO-based terrestrial-satellite network where terrestrial users can access the network through the LEO-assisted backhaul. We aim to minimize the number of satellites in the LEO satellite constellation while satisfying the backhaul requirement of each terrestrial-satellite terminal (TST). We first derive the average total backhaul capacity of each TST, based on which a three-dimensional constellation optimization algorithm is proposed to minimize the number of satellites in the LEO satellite constellation. Simulation results verify our theoretical capacity analysis and show that for any given coverage percentage requirement, the corresponding optimized LEO satellite constellation can be obtained by the proposed three-dimensional constellation optimization algorithm.
机译:最近,高密集的低地球轨道(LEO)卫星通信网络在高频频段上担任了高容量回程数据服务的潜在解决方案。在本文中,我们考虑了一个超密集的leo基地卫星网络,陆地用户可以通过Leo辅助回程访问网络。我们的目标是最小化Leo卫星星座中的卫星数量,同时满足每个陆地卫星终端(TST)的回程要求。我们首先推导出每个TST的平均全回程容量,基于该TST的平均全回程容量,基于该TST的三维星座优化算法,以最小化Leo卫星星座中的卫星数量。仿真结果验证了我们的理论能力分析,并表明对于任何给定的覆盖百分比要求,可以通过所提出的三维星座优化算法获得相应的优化Leo卫星星座。

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