To meet the increasing demands of next-generation cellular networks (e.g., 6G), advanced networking technologies must be incorporated. On one hand, the Fog Radio Access Network (F-RAN), has been proposed as an enhancement to the Cloud Radio Access Network (C-RAN). On the other hand, efficient network architectures, such as Named Data Networking (NDN), have been recognized as prominent Future Internet candidates. Nevertheless, the interplay between F-RAN and NDN warrants further investigation. In this paper, we propose an NDN-enabled F-RAN architecture featuring a strategy for distributed in-network caching. Through a simulation study, we demonstrate the superiority of the proposed in-network caching strategy in comparison with baseline caching strategies in terms of network resource utilization, cache hits, and fronthaul channel usage.
翻译:为了满足下一代蜂窝网络(例如6G)日益增长的需求,必须纳入先进的网络技术,一方面,作为加强云无线电接入网络(C-RAN)的一个建议,提出了雾无线电接入网络(F-RAN),另一方面,高效率的网络结构,如命名数据网络(NDN),被公认为未来互联网的主要候选者,然而,F-RAN和NDN之间的相互作用需要进一步调查,在本文件中,我们提议由NDN促成的F-RAN结构,其内容是网络内封存战略,通过模拟研究,我们展示了拟议的网络内缓存战略相对于网络资源利用、缓存点击和前沿通道使用方面基线缓存战略的优越性。