Space-air-ground integrated networks (SAGINs) will play a key role in 6G communication systems. They are considered a promising technology to enhance the network capacity in highly dense agglomerations and to provide connectivity in rural areas. The multi-layer and heterogeneous nature of SAGINs necessitates an innovative design of their multi-tier associations. We propose a modeling of the SAGINs association problem using multi-sided matching theory. Our aim is to provide a reliable, asynchronous and fully distributed approach that associates nodes across the layers so that the total end-to-end rate of the assigned agents is maximized. To this end, our problem is modeled as a multi-sided many-to-one matching game. A randomized matching algorithm with low information exchange is proposed. The algorithm is shown to reach an efficient and stable association between nodes in adjacent layers. Our simulation results show that the proposed approach achieves significant gain compared to the greedy and distance-based algorithms.
翻译:空空地综合网络(SAGINs)将在6G通信系统中发挥关键作用,被视为一种大有希望的技术,可以提高高度密集群集中的网络能力,并提供农村地区的连通性。SAGINs具有多层次和多样性的性质,因此有必要对其多层次协会进行创新设计。我们建议使用多面匹配理论来模拟SAGINs协会问题。我们的目标是提供一种可靠、不同步和完全分布的方法,将节点连接到各层,以便最大限度地实现所分配物剂的端到端总比率。为此,我们的问题以多面、多面、一对一的匹配游戏为模型。提出了与低层信息交流随机匹配的算法。算法显示邻近层节点之间能达到高效和稳定的联系。我们的模拟结果表明,拟议的方法与贪婪和远程算法相比,取得了显著的收益。