Innovation Academy for Microsatellites of CAS, Shanghai 201203, China.
University of Chinese Academy of Sciences, Beijing 100049, China.
Sensors (Basel). 2023 Mar 17;23(6):3207. doi: 10.3390/s23063207.
In the realm of providing space-based internet access services, utilizing large-scale low Earth orbit (LEO) satellite networks have emerged as a promising solution for bridging the digital divide and connecting previously unconnected regions. The deployment of LEO satellites can augment terrestrial networks, with increased efficiency and reduced costs. However, as the size of LEO constellations continues to grow, the routing algorithm design of such networks faces numerous challenges. In this study, we present a novel routing algorithm, designated as Internet Fast Access Routing (IFAR), aimed at facilitating faster internet access for users. The algorithm consists of two main components. Firstly, we develop a formal model that calculates the minimum number of hops between any two satellites in the Walker-Delta constellation, along with the corresponding forwarding direction from source to destination. Then, a linear programming is formulated, to match each satellite to the visible satellite on the ground. Upon receipt of user data, each satellite then forwards the data only to the set of visible satellites that correspond to its own satellite. To validate the efficacy of IFAR, we conduct extensive simulation work, and the experimental results showcase the potential of IFAR to enhance the routing capabilities of LEO satellite networks and improve the overall quality of space-based internet access services.
在提供天基互联网接入服务的领域中,利用大规模低地球轨道(LEO)卫星网络已成为弥合数字鸿沟和连接以前未连接地区的有前途的解决方案。部署 LEO 卫星可以增强地面网络的效率并降低成本。然而,随着 LEO 星座的规模不断扩大,此类网络的路由算法设计面临着众多挑战。在本研究中,我们提出了一种名为 Internet Fast Access Routing(IFAR)的新型路由算法,旨在为用户提供更快的互联网接入。该算法由两个主要部分组成。首先,我们开发了一个正式模型,用于计算 Walker-Delta 星座中任意两颗卫星之间的最小跳数,以及从源到目的地的相应转发方向。然后,制定了线性规划,将每颗卫星与地面上可见的卫星进行匹配。收到用户数据后,每颗卫星仅将数据转发到与其自身卫星相对应的一组可见卫星。为了验证 IFAR 的有效性,我们进行了广泛的仿真工作,实验结果展示了 IFAR 增强 LEO 卫星网络路由能力并提高天基互联网接入服务整体质量的潜力。