计算机科学
计算机网络
静态路由
分布式计算
网络数据包
动态源路由
链路状态路由协议
多路径等成本路由
IP转发
路由协议
布线(电子设计自动化)
地理路由
基于策略的路由
路由表
卫星星座
卫星
工程类
航空航天工程
作者
Fei Yan,Zhiyuan Wang,Shan Zhang,Qingkai Meng,Hongbin Luo
标识
DOI:10.1109/tnse.2024.3384452
摘要
Low earth orbit (LEO) constellations equipped with inter-satellite links (ISLs) have the potential to provide global Internet services. However, the mobility of LEO satellites renders the routing problem of large-scale constellations highly challenging. This paper proposes a Logic Path Identified Hierarchical (LPIH) routing to overcome the challenge. Specifically, LPIH partitions the constellation into multiple satellite groups and identifies the logic path between adjacent groups via the path identifier (PID). Accordingly, LPIH detects and disseminates ISL state changes within the group, achieving fast routing convergence with little overhead. Furthermore, LIPH decouples inner-group routing from inter-group routing based on the PID. The inter-group routing is information-centric and pull-based, which relies on the in-packet PID to specify the inter-group forwarding path. This improves the reliability of inter-group forwarding since a PID corresponds to multiple ISLs. The inner-group routing is host-centric and push-based, which relies on the in-packet PID to specify the inner-group destination. Such hierarchical content retrieval allows LPIH to harness the benefits of information-centric and host-centric routing. We develop a simulation platform for satellite networks based on OMNeT++ and conduct extensive packet-level experiments. The results show that LPIH increases the packet delivery ratio up to 105.3% compared to state-of-the-art routing mechanisms.
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