低地球轨道卫星星座中QoS保证路由策略

Chenxi Hou, Yan Zhu
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引用次数: 0

摘要

近地轨道卫星通信在第六代(6G)通信中占有重要地位。如何实现保证服务质量(QoS)的流量路由一直是一个研究热点。然而,由于低轨道卫星网络具有中心卫星与相邻四颗卫星之间的四链路连接、动态网络拓扑导致的连接切换、同轨与不同轨间链路速率不同等特点,主流的流量路由方法或会造成主干线的流量拥塞,或计算复杂度高,阻碍了其在实际中的部署和应用。为了解决上述问题,我们提出了QoS保证路由策略,保证路由延迟和链路开销满足工程要求。在该策略中,考虑到上述特点,我们分别提出了流量优先级划分方法、每跳QoS保证技术和QoS保证路由算法,以保证差异化的流量端到端QoS需求。仿真结果表明,与现有文献相比,该方法具有较低的时延、链路开销和计算复杂度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The QoS Guaranteed Routing Strategy in Low Earth Orbit Satellite Constellations
The low earth orbit (LEO) satellite communications play an important role in the sixth generation (6G) communications. How to achieve the quality of service (QoS) guaranteed traffic routing is always a research hotspot. However, due to the characteristics performed in the LEO satellite network, i.e., the four-link connection between the central satellite and its four adjacent satellites, connection switches caused by dynamic network topology, and different link rates between the same orbit and different orbits, the mainstream traffic routing methods will either cause the traffic congestion in the main stem, or the high computational complexity, which hinders their deployment and application in practice. To solve above problems, we propose a QoS guaranteed routing strategy, which assures the routing delay and link overhead of meeting engineering requirements. In this strategy, considering the above characteristics, we respectively propose the traffic priority division method, per hop QoS guaranteed technology and QoS guaranteed routing algorithm to guarantee differentiated traffic end-to-end QoS requirements. The simulation results show the superiority of our proposed method in terms of the lower delay, link cost, and computational complexity compared with existing literature.
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