Intra and inter datacenter networking: The role of optical packet switching and flexible bandwidth optical networking

S. Yoo, Yawei Yin, Ke Wen
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引用次数: 38

Abstract

This paper discusses prospects and challenges of optical networking designed to meet exponentially growing demands of data traffic. We discuss both intra and inter data-center networking. For intra-datacenter networking, a single arrayed waveguide grating router based optical switch offers fully connected all-to-all parallel interconnection amongst thousands of racks to achieve high throughput and low-latency interconnection in a new flattened network topology. This new interconnection network named LION provides significant performance advantages over other electrical, optical, or hybrid interconnection networks in terms of available bandwidth per channel, end to end latency and throughput. For inter-datacenter networking, we investigate flexible bandwidth elastic optical networks designed to adaptively accommodate bursty and high capacity traffic between the data centers while supporting the traditional traffic in the background. Further, we demonstrate adaptive and real-time control of the spectral assignment and modulation format for each slice while achieving defragmentation to optimize the spectrum utilization under the dynamically varying traffic demands. The paper covers the intra- and inter- datacenter networking architecture, algorithm, control plane and simulation and experimental studies from the network testbed.
数据中心内和数据中心间组网:光分组交换和灵活带宽光网络的作用
本文讨论了光网络设计的前景和挑战,以满足指数级增长的数据流量需求。我们将讨论数据中心内部和数据中心之间的网络。对于数据中心内部网络,基于单阵列波导光栅路由器的光交换机在数千个机架之间提供完全连接的全对全并行互连,从而在新的扁平网络拓扑结构中实现高吞吐量和低延迟互连。这种名为LION的新型互连网络在每通道可用带宽、端到端延迟和吞吐量方面,比其他电气、光学或混合互连网络具有显著的性能优势。对于数据中心间网络,我们研究了灵活带宽弹性光网络,该网络旨在自适应地适应数据中心之间的突发和高容量流量,同时在后台支持传统流量。此外,我们演示了自适应和实时控制频谱分配和调制格式的每个片,同时实现碎片整理,以优化频谱利用率在动态变化的业务需求下。本文介绍了数据中心内和数据中心间的网络结构、算法、控制平面以及网络试验台的仿真和实验研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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