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Design and Evaluation of Optical Circuit Switches for Intra-Datacenter Networking

机译:数据中心内网络光电路开关的设计与评估

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With the rapid growth in intra-datacenter traffic, the high power consumption stemming from the huge number of electrical switches is becoming a critical issue. Hence, high-port-count optical circuit switches are urgently needed. In this paper, we overview recently developed optical circuit switch architecture based on two-dimensional switches, i.e., space switches and wavelength-routing switches. The attainable maximum switch port counts and hardware requirements are quantitatively evaluated through extensive computer simulations that consider 10-Gbps intensity modulation with direct detection systems, 43-Gbps differential quadrature phase-shift keying with self-coherent detection systems, and 128-Gbps dual-polarization quadrature phase-shift keying with coherent detection systems. The simulation results confirm the existence of switching architecture that can accommodate more than 1,000 ports with relatively light hardware requirements.
机译:随着数据中心内部流量的快速增长,大量电气开关引起的高功耗正成为一个关键问题。因此,迫切需要高端口数的光电路开关。在本文中,我们概述了最近开发的基于二维开关的光学电路开关架构,即空间开关和波长路由开关。通过广泛的计算机模拟对可达到的最大交换机端口数和硬件要求进行了定量评估,这些模拟考虑了直接检测系统的10 Gbps强度调制,自相干检测系统的43 Gbps差分正交相移键控以及128 Gbps双通道具有相干检测系统的偏振正交相移键控。仿真结果证实了交换架构的存在,该架构可容纳1000个以上的端口,且硬件要求相对较低。

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