As 5th Generation research reaches the twilight, the research community must go beyond 5G and look towards the 2030 connectivity landscape, namely 6G. In this context, this work takes a step towards the 6G vision by proposing a next generation communication platform, which aims to extend the rigid coverage area of fixed deployment networks by considering virtual mobile small cells (MSC) that are created on demand. Relying on emerging computing paradigms such as NFV (Network Function Virtualization) and SDN (Software Defined Networking), these cells can harness radio and networking capability locally reducing protocol signaling latency and overhead. These MSCs constitute an intelligent pool of networking resources that can collaborate to form a wireless network of MSCs providing a communication platform for localized, ubiquitous and reliable connectivity. The technology enablers for implementing the MSC concept are also addressed in terms of virtualization, lightweight wireless security, and energy efficient RF. The benefits of the MSC architecture towards reliable and efficient cell offloading are demonstrated as a use-case.
翻译:随着第五代研究的到来,研究界必须超越5G,着眼于2030年连通性景观,即6G。在这方面,这项工作向6G愿景迈出了一步,提出了下一代通信平台,旨在扩大固定部署网络的硬性覆盖范围,办法是考虑根据需求创建的虚拟移动小细胞(MSC),依靠NFV(网络功能虚拟化)和SDN(软件定义联网)等新兴的计算模式,这些细胞可以利用无线电和网络能力,在当地减少协议的延迟和间接费用信号。这些海安会构成一个智能网络资源库,可以合作形成海安会的无线网络,为本地化、无处不在和可靠的连通提供通信平台。