低地球轨道卫星网络链路故障的快速路由响应

Zhiping Lu, Ruxin Zhi, Weiguo Ma
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引用次数: 1

摘要

低地球轨道卫星通信系统对于提供全球、高速和低延迟的互联网接入服务具有吸引力。为了实现全球连续多次覆盖,卫星数量是巨大的。但低地球轨道卫星网络由于不可预测的链路故障和频繁的拓扑变化而容易出现不稳定。为此,本文首次提出了一种对链路故障快速响应的路由方案。在Dijkstra算法的基础上,提出了一种可扩展的路由算法,使端到端传输延迟最小化。它利用了星座轨迹的可预测性,并根据网络拓扑的变化动态变化。它同时提供最短的路由路径和备选路径。当一个卫星检测到链路故障时,通知包将被发送到它的邻居,以调整到替代路由路径。通知报文也将被发送到头节点,以便重新计算路由表。最后,进行了大量的仿真,结果表明所提出的方案能够产生理想的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Quick Routing Response to Link Failure in Low-Earth Orbit Satellite Networks
Low earth orbit satellite communication systems are attractive for provisioning global, high-speed and low latency Internet access services. In order to achieve global continuous multiple coverage, the number of satellites is tremendous. But Low earth orbit satellite networks are prone to instability due to unpredictable link failures and frequent topology changes. Therefore, in this paper, a novel routing schemes with quick response to link failures is first proposed. Based on Dijkstra algorithm, a scalable routing algorithm is proposed to minimize the end-to-end transmission delay. It takes advantage of the predictable constellation trajectory, and changes dynamically according to the changes of network topology. It provides the shortest routing path and an alternative path simultaneously. When a link failure is detected by one satellite, notification packets will be sent to its neighbors for adjustment to the alternative routing path. Notification packets also will be sent to the head node for the recalculation of routing table. Finally, extensive simulations have been conducted, and the results show that the proposed scheme is able to produce desired performance.
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