The recent adaption of virtualization technologies in the next generation mobile network enables 5G base station to be segregated into a Radio Unit (RU), a Distributed Unit (DU), and a Central Unit (CU) to support Cloud based Radio Access Networks (C-RAN). RU and DU are connected through a fronthaul link. In contrast, CU and DU are connected through a midhaul link. Although virtualization of CU gives benefits of centralization to the operators, there are other issues to be solved such as optimization of midhaul bandwidth and computing resources at edge cloud and central cloud where the DUs and CUs are deployed, respectively. In this paper, we propose a dynamic functional split selection for the DUs in 5G C-RAN by adopting to traffic heterogeneity where the midhaul bandwidth is limited. We propose an optimization problem that maximizes the centralization of the C-RAN system by operating more number of DUs on split Option-7 by changing the channel bandwidth of the DUs. The dynamic selection of split options among each CU-DU pair gives 90% centralization over the static functional split for a given midhaul bandwidth.
翻译:在下一代移动网络中,最近对虚拟化技术的改造使5G基站能够分为一个无线电股(RU)、一个分布式股(DU)和一个中央股(CU),以支持云基无线电接入网络(C-RAN)。RU和DU通过前导线连接。相反,CU和DU通过中导线连接。虽然CU的虚拟化给操作者带来了集中化的好处,但还有其他问题有待解决,如在部署DU和CU的边缘云和中央云中优化中间带宽和计算资源。在本文件中,我们提议对5G C-RAN的DU进行动态功能分割选择,在中导线有限的地方采用交通偏差。我们提出优化问题,通过改变DU和CU的频道带宽度,使更多的DU在分流-7上运行更多的DU,从而最大限度地实现C-RAN系统的集中化。每个C-DU对每对5G组的DU组提供90%的中央功能分级,在静态带宽度上提供90%的中央。