6G空地综合网络体系结构分析

Jie Wang, Xinqiang Meng, Bingxin Wang
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引用次数: 0

摘要

作为6G的关键改进,空间和地面的结合扩展了移动通信的可能性。6G空地一体化网络具有大时空尺度、时变拓扑、异构、空间节点高度动态、空间节点资源受限等特点。本文首先分析了实现地空一体化组网的主要障碍。然后,在分析6G空地一体化标准典型应用场景和网络需求的基础上,构建了6G空地一体化标准的三维集成网络体系结构。我们建议两种不同的空间-地面综合网络架构:一种基于分散的核心网,另一种基于集中式的地面核心网。前者将核心网置于地面,空中平台执行部分接入网活动。对于前者,空中平台承载部分接入网功能,核心网部署在地面。对于后者,空中平台承载接入网功能,并根据需求加载部分核心网元,以满足不同应用场景的需求。
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Analysis of 6G Space-Ground Integrated Network Architecture
As a key improvement of 6G, the combination of space and the ground expands the possibilities for mobile communication. The 6G space-ground integrated network is characterized by large spatial and temporal scales, time-varying topology, heterogeneous, highly dynamic spatial nodes, constrained spatial node resources, etc. The main obstacles to integrated space-ground networking are firstly examined in this research. Then, we build a three-dimensional integrated network architecture for the 6G space-ground integrated standard after analyzing the typical application scenarios and requirements of the network. We suggest two different space-ground integrated network architectures: one based on a dispersed core network and the other on a centralized core network on the ground. With the former, the core network is placed on the ground, and the air platform performs some access network activities. For the former, the air platform carries part of the access network functions and the core network is deployed on the ground. For the latter, the air platform carries access network functions and also loads part of the core network elements according to the requirements in order to meet the needs of different application scenarios.
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