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All-optical packet/circuit switching-based data center network for enhanced scalability, latency, and throughput

机译:基于全光分组/电路交换的数据中心网络,可增强可扩展性,延迟和吞吐量

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摘要

Applications running inside data centers are enabled through the cooperation of thousands of servers arranged in racks and interconnected together through the data center network. Current DCN architectures based on electronic devices are neither scalable to face the massive growth of DCs, nor flexible enough to efficiently and cost-effectively support highly dynamic application traffic profiles. The FP7 European Project LIGHTNESS foresees extending the capabilities of today??s electrical DCNs through the introduction of optical packet switching and optical circuit switching paradigms, realizing together an advanced and highly scalable DCN architecture for ultra-high-bandwidth and low-latency server-to-server interconnection. This article reviews the current DC and high-performance computing (HPC) outlooks, followed by an analysis of the main requirements for future DCs and HPC platforms. As the key contribution of the article, the LIGHTNESS DCN solution is presented, deeply elaborating on the envisioned DCN data plane technologies, as well as on the unified SDN-enabled control plane architectural solution that will empower OPS and OCS transmission technologies with superior flexibility, manageability, and customizability.
机译:通过在机架中排列并通过数据中心网络互连在一起的数千台服务器的协作,可以启用在数据中心内部运行的应用程序。当前基于电子设备的DCN架构既不能扩展以应对DC的大量增长,也没有足够的灵活性以有效且经济高效地支持高度动态的应用程序流量配置文件。 FP7欧洲项目LIGHTNESS预计通过引入光分组交换和光电路交换范例来扩展当今的电气DCN的功能,共同实现用于超高带宽和低延迟服务器的先进且高度可扩展的DCN架构,到服务器的互连。本文回顾了当前DC和高性能计算(HPC)的前景,然后分析了未来DC和HPC平台的主要要求。作为本文的主要贡献,将介绍LIGHTNESS DCN解决方案,深入阐述所设想的DCN数据平面技术以及支持SDN的统一控制平面体系结构解决方案,该解决方案将为OPS和OCS传输技术提供卓越的灵活性,可管理性和可定制性。

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    《IEEE Network》 |2013年第6期|14-22|共9页
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