优化虚拟PON切片,支持基于mec的Cloud-RAN的超低延迟网格流量模式

Sandip Das, M. Ruffini
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引用次数: 5

摘要

随着蜂窝的逐步致密化,云- ran和多接入边缘计算(MEC)的部署成为现实,以支持5G及以后的超低延迟和高可靠性,它在前传网络中产生网状流量模式。这导致了PON架构增强的虚拟化演变,以支持这种网格流量模式。然而,在这种基于mesh-PON的前传传输中,虚拟PON切片的动态分配成为一个研究难题。在本文中,我们提供了一个混合分析迭代模型来计算最佳的虚拟PON切片分配,在下一代基于mec的Cloud-RAN中提供具有超低端到端延迟的网格访问连接。该方法可以在与实时或近实时操作兼容的时间尺度上计算出最优的虚拟PON切片分配。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal virtual PON slicing to support ultra-low latency mesh traffic pattern in MEC-based Cloud-RAN
As progressive densification of cells, deployment of Cloud-RAN and Multi Access Edge Computing (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 the evolution of PON architectural enhancements with virtualization in order to support such mesh traffic pattern. However, the 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.
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