Multi-objective routing algorithms for low-earth orbit satellite network

IF 0.9 4区 计算机科学 Q3 ENGINEERING, AEROSPACE International Journal of Satellite Communications and Networking Pub Date : 2023-03-27 DOI:10.1002/sat.1476
Xuan Xie, Linyu Huang, Chengwen Tang, Qian Ning
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Abstract

The low-earth orbit (LEO) satellite network, composed of a large number of satellite nodes, is a hot research topic at present. Due to the characteristics of the large-scale LEO satellite network, such as many satellite nodes, short orbit period, large dynamic change of topology, and unstable link-state, its communication quality of service (QoS) requirements are difficult to meet. Aiming at this problem, various factors that may affect data transmission are first analyzed. The network link selection problem is modeled as a multi-constraint optimization decision problem, a routing mathematical model based on linear programming (LP) is designed, and its solution is solved. Aiming at the problem of limited onboard computing resources, a multi-object optimization Dijkstra algorithm (MOODA) is designed. The MOODA finds the optimal path according to the comprehensive performance of the link. It solves the problems of poor comprehensive QoS performance and the low degree of load balancing of the paths found by the Dijkstra algorithm. The simulation results show that the paths found by the two algorithms have good QoS, robustness, and load balancing performance.

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低地球轨道卫星网络的多目标路由算法
由大量卫星节点组成的低地球轨道卫星网络是当前的研究热点。由于大规模LEO卫星网络卫星节点多、轨道周期短、拓扑动态变化大、链路状态不稳定等特点,其通信服务质量(QoS)要求难以满足。针对这一问题,首先分析了影响数据传输的各种因素。将网络链路选择问题建模为多约束优化决策问题,设计了基于线性规划的路由数学模型,并对其进行了求解。针对机载计算资源有限的问题,设计了一种多目标优化Dijkstra算法。MOODA根据链路的综合性能找到最优路径。解决了Dijkstra算法所寻路径的综合QoS性能差、负载均衡程度低等问题。仿真结果表明,两种算法找到的路径具有良好的QoS、鲁棒性和负载均衡性能。
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来源期刊
CiteScore
4.10
自引率
5.90%
发文量
31
审稿时长
>12 weeks
期刊介绍: The journal covers all aspects of the theory, practice and operation of satellite systems and networks. Papers must address some aspect of satellite systems or their applications. Topics covered include: -Satellite communication and broadcast systems- Satellite navigation and positioning systems- Satellite networks and networking- Hybrid systems- Equipment-earth stations/terminals, payloads, launchers and components- Description of new systems, operations and trials- Planning and operations- Performance analysis- Interoperability- Propagation and interference- Enabling technologies-coding/modulation/signal processing, etc.- Mobile/Broadcast/Navigation/fixed services- Service provision, marketing, economics and business aspects- Standards and regulation- Network protocols
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