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Next-Generation Optically-Interconnected High-Performance Data Centers

机译:下一代光互连高性能数据中心

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The communication requirements imposed by the unabated growth in both the size and computational density of modern data centers will soon outpace the fundamental capabilities of conventional electronic interconnection networks. Optical interconnects represent a potentially disruptive technology that can simultaneously satisfy the throughput, latency, and energy demands of these next-generation systems. In this paper, we propose an end-to-end photonic networking platform for future optically-interconnected data center networks. A reconfigurable hybrid photonic network building block and a protocol-agnostic optical network interface comprise the key elements of our proposed system. A modular optical switch fabric prototyping platform is designed and implemented to support a wide variety of potential photonic technologies. We successfully demonstrate nanosecond-scale optical packet-switching at 1-Tb/s per port (40-Gb/s ${times}25lambda$s) through our prototype, configured as a 4$,times,$4 switch, and confirm error-free transmission across all wavelengths. In order to flexibly allocate appropriate bandwidth for heterogeneous applications, we further implement and evaluate a novel wavelength-reconfigurable optical packet- and circuit-switch by utilizing our optical switch platform. Finally, we detail our implementation of an optical network interface card (O-NIC) designed to bridge the gap between the well-established protocol layers utilized in current networks and the physical layer of the proposed photonic networks and demonstrate its functionality by the streaming of high-definition video through the end-to-end optical network.
机译:现代数据中心的大小和计算密度的持续增长所带来的通信需求将很快超过传统电子互连网络的基本功能。光学互连代表了一种潜在的破坏性技术,可以同时满足这些下一代系统的吞吐量,延迟和能源需求。在本文中,我们为未来的光互连数据中心网络提出了一个端到端光子联网平台。可重构的混合光子网络构建块和与协议无关的光网络接口构成了我们提出的系统的关键要素。设计并实现了模块化的光交换结构原型平台,以支持各种潜在的光子技术。我们通过我们的原型成功地演示了纳秒级光分组交换,每个端口的传输速率为1Tb / s(40 Gb / s $ {times} 25lambda $ s),配置为4 $,times,$ 4交换,并确认错误跨所有波长的免费传输。为了灵活地为异构应用分配适当的带宽,我们通过利用我们的光交换平台进一步实现和评估了一种新型的波长可重新配置的光分组和电路交换。最后,我们详细介绍了光网络接口卡(O-NIC)的实现,该设计旨在弥合当前网络中使用的公认的协议层与拟议的光子网络的物理层之间的差距,并通过流式传输来演示其功能。通过端到端光网络传输高清视频。

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