星座
计算机科学
卫星
卫星星座
物联网
服务质量
实时计算
通信卫星
趋同(经济学)
基线(sea)
近地轨道
轨道(动力学)
功能(生物学)
算法
服务(商务)
卫星系统
互联网
算法设计
计算机网络
卫星广播
分布式计算
遥感
广播(网络)
电信
适应度函数
准天顶卫星系统
作者
Ming Ying,Xiaoming Chen,Qiao Qi,Zhaoyang Zhang
标识
DOI:10.48550/arxiv.2509.00345
摘要
Low Earth orbit (LEO) satellite Internet of Things (IoT) has been identified as one of the important components of the sixth-generation (6G) non-terrestrial networks (NTN) to provide ubiquitous connectivity. Due to the low orbit altitude and high mobility, a massive number of satellites are required to form a global continuous coverage constellation, leading to a high construction cost. To this end, this paper proposes a LEO satellite IoT constellation design algorithm with the goal of minimizing the total cost while satisfying quality of service (QoS) requirements in terms of coverage ratio and communication quality. Specifically, with a novel fitness function and efficient algorithm's operators, the proposed algorithm converges more quickly and achieves lower constellation construction cost compared to baseline algorithms under the same QoS requirements. Theoretical analysis proves the global and fast convergence of the proposed algorithm due to a novel fitness function. Finally, extensive simulation results confirm the effectiveness of the proposed algorithm in LEO satellite IoT constellation design.
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