卫星
近地轨道
计算机科学
传输(电信)
地心轨道
遥感
轨道(动力学)
布线(电子设计自动化)
通信卫星
地球观测
算法
高度(三角形)
电信
航空航天工程
计算机网络
地理
工程类
数学
几何学
作者
Chengcheng Li,Yasheng Zhang,Zhiqiang Cui,Yi Zhang,Shiyuan Liu,Zhen Yu,Peiying Zhang
标识
DOI:10.1109/iwcmc58020.2023.10182766
摘要
The use of satellite technology for communication and data transmission has greatly increased in recent years, and low earth orbit (LEO) satellites have become an important part of this infrastructure. LEO satellites orbit the earth at an altitude of around 500 to 2,000 kilometers, which allows them to provide coverage to a larger area compared to higher altitude satellites. However, routing data through LEO satellites presents unique challenges due to their low altitude and the need to continuously adjust their communication links as they move. To address these challenges, various routing algorithms have been developed to optimize the transmission of data through LEO satellite networks. In this review, we will examine the different types of LEO satellite routing algorithms and their key features, as well as the challenges and opportunities they present. We will also discuss the performance and trade-offs of these algorithms and their potential applications in various scenarios.
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