透明和快速可重构光网络与边缘计算节点的超5G应用

Henrique Santana, B. Pan, R. Kraemer, K. Prifti, A. Mefleh, N. Calabretta
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引用次数: 0

摘要

为了满足5G及以上网络中时间敏感型应用的严格延迟要求,数据必须以分散的方式处理。边缘云网络由计算资源组成,这些计算资源最多放置在距离它们需要处理的数据流源几十公里远的地方。除了物理上的接近性外,还需要光交换机的纳秒级重构时间和光网络的快速控制,以保证延迟在数十微秒量级的动态性。此外,光子开关将实现节点的透明旁路,降低成本,功耗和格式依赖于光到电到光接口以及电开关中的大抖动。在这项工作中,我们提出了一个由城域接入环和光交换边缘数据中心组成的边缘云网络。基于soa的roadm在环中用于快速添加/删除波长。边缘数据中心由机架上的交换机组成,通过基于soa的光交换机相互连接。网络节点使用监控通道以时隙同步方式交换控制数据包,基于fpga的控制器保证纳秒级的重新配置决策。
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Transparent and Fast Reconfigurable Optical Network with Edge Computing Nodes for Beyond 5G applications
To fulfil stringent latency requirements of timesensitive applications in 5G and beyond networks, data has to be processed in a decentralized way. The Edge Cloud Network is composed of computational resources placed at most at tens of kilometers far from the sources of the data flows they need to process. Besides the physical proximity, nanosecond-scale reconfiguration time of optical switches and a fast control of the optical networks are also required to guarantee dynamicity with latencies on the order of tens of microseconds. Moreover, photonic switches will enable transparent bypass of nodes reducing costly, power hungry and format dependent optical to electrical to optical interfaces as well as large jitter in electrical switches. In this work, we propose an Edge Cloud network composed of a metro-access ring and optically switched edge data center. SOA-based ROADMs are used in the ring for fast add/drop of wavelengths. The edge data center is composed of top-of-rack switches interconnected via an SOA-based optical switch. A supervisory channel is used by the network nodes to exchange control packets in a time-slotted synchronous fashion, and FPGA-based controllers guarantee nanosecond-scale reconfiguration decisions.
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