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A Routing Algorithm Based on Link State Information for LEO Satellite Networks

机译:一种基于Leo卫星网络链路状态信息的路由算法

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Low earth orbit (LEO) satellite networks can provide global coverage, low-latency services to users. The satellite networks are multi-hop networks, and the dynamic characteristics of the networks bring great challenges to design efficient routing algorithms. In this paper, we proposed an improved routing algorithm based on inter-satellite link(ISL) state information and it is on-board autonomous control. The routing algorithm is divided into three phases, namely topology establishment phase, routing calculation phase and link failure response phase. Satellites make routing decisions for each hop based on the link state information with neighbor satellites and the network topology. The simulation results show that our routing algorithm has significant advantages in delivery ratio and end-to-end delay.
机译:低地球轨道(LEO)卫星网络可以为用户提供全球覆盖范围,低延迟服务。卫星网络是多跳网络,网络的动态特性为设计有效的路由算法带来了巨大的挑战。在本文中,我们提出了一种基于卫星间链路(ISL)状态信息的改进的路由算法,并且它是板载自主控制。路由算法分为三个阶段,即拓扑建立阶段,路由计算阶段和链路故障响应阶段。卫星基于带有邻居卫星的链路状态信息和网络拓扑的链路状态信息为每跳进行路由决策。仿真结果表明,我们的路由算法在交付比率和端到端延迟方面具有显着的优势。

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