As progressive densification of cells, deployment of Cloud-RAN and \ac{MEC} are coming into reality to support the ultra-low latency with high reliability in 5G and beyond, it generates mesh traffic pattern across fronthaul network. This led to evolution of PON architectural enhancements with virtualization in order to support such mesh traffic pattern. However, allocation of virtual PON slices dynamically over such mesh-PON based fronthaul transport is becoming a research challenge. In this paper, we provide a mixed analytical-iterative model to compute optimal virtual PON slice allocation, providing mesh access connectivity with ultra-low end-to-end latency in next-generation MEC-based Cloud-RAN. Our proposed method can compute optimal virtual PON slice allocation in timescales compatible with real-time or near real-time operations.
翻译:随着细胞的逐渐密度化,云-RAN和\ac{MEC}的部署正成为现实,以支持5G及以后高度可靠的超低纬度,它在整个前厅网络中生成网状交通模式,从而导致PON建筑改进的演变,并实现虚拟化以支持这种网状交通模式,然而,虚拟PON切片在以网状-PON为基础的前厅交通中动态地分配正在成为一个研究挑战。在本文件中,我们提供了一个混合的分析-描述模型,以计算最佳虚拟PON切片分配,在下一代以MEC为主的云-RAN中提供超低端至端的网状连接。我们提出的方法可以计算出与实时或近实时操作相容的时间尺度的最佳虚拟PON切片分配。