云原生硬件加速5G虚拟化无线接入网

J. Dion, Julien Lallet, Laurent Beaulieu, Patrick Savelli, P. Bertin
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引用次数: 3

摘要

云无线接入网包括在共享服务器上输出和汇集无线电处理,以便更好地利用计算资源,更灵活地操作,从而优化成本和能源性能。无线电物理层的一些过程对计算能力要求很高,这意味着高能耗。我们的方法能够自动激活硬件可编程加速资源,这些资源在性能和能源效率方面更适合这些过程。第五代移动网络中标准化的低密度奇偶校验前向纠错功能被卸载在这些硬件加速资源上。基于kubernetes的编排与边缘计算加速异构基础设施(CPU、GPU、FPGA)的使用相兼容,这些基础设施可以分布在运营商网络的边缘,以部署RAN分布式单元。我们评估了我们的方法的概念验证实施,并评估了数据卸载和能源消耗的成本。这预示着5G接入的完整云编排,如O-RAN联盟所推荐的那样。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cloud Native Hardware Accelerated 5G virtualized Radio Access Network
Cloud Radio Access Network consists in deporting and pooling radio processing on shared servers for a better use of computing resources, more agile operations, and thus optimizing costs and energy performance. Some of these processes at the radio physical layer are highly demanding in terms of computing power, which implies high energy consumption. Our approach enables the automatic activation of hardware programmable acceleration resources that are better suited to these processes in terms of performance and energy efficiency. Low-Density Parity-Check Forward Error Correction functions standardized in 5th Generation of Mobile Networks are offloaded on these hardware acceleration resources. Kubernetes-based orchestration is made compatible with the use of a edge computing accelerated heterogeneous infrastructure (CPU, GPU, FPGA) that can be distributed at the edge of the operator’s network to deploy the RAN Distributed Unit. We assess the proof-of-concept implementation of our approach and evaluate cost in data offloading and energy consumption. This prefigures a full cloud orchestration for 5G access, such as recommended in the O-RAN consortium.
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