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Electro-optic switches based on space switching of multiplexed WDM signals: Blocking vs non-blocking design trade-offs

机译:基于多路复用WDM信号空间切换的电光开关:阻塞与非阻塞设计之间的权衡

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摘要

Short distance optical interconnects are a promising solution for tackling the bandwidth and low energy consumption requirements of next generation Data Centers (DC) and High Performance Computing (HPC) systems. The realization of optical switching should offer scalability, allowing the interconnection of multiple racks and/or servers/compute nodes, and quick reconfiguration times. To this end, fast small-radix MicroRing Resonator (MRR)- and Mach-Zehnder Interferometer (MZI)-based space switching devices, capable of supporting multiple optical signals multiplexed through Wavelength Division Multiplexing (WDM) have been reported. Using such devices as building blocks we evaluate the performance of a number of simple electro-optic switch architectures based on successive wavelength selection, WDM multiplexing and space switching, attempting to achieve scalable switching fabrics with good throughput performance on average using little additional hardware and few switching stages, thus lower total insertion losses as well as lower power consumption. The price paid for such architectural simplicity is that it introduces additional constraints on the feasible permutation matrices of such switching fabrics, affecting performance for some traffic patterns. We discuss the trade-offs between performance and hardware requirements and based, on our findings, we propose alternative architectures that overcome these limitations.
机译:短距离光互连是解决下一代数据中心(DC)和高性能计算(HPC)系统的带宽和低能耗要求的有前途的解决方案。光交换的实现应提供可伸缩性,从而允许多个机架和/或服务器/计算节点的互连,以及快速的重新配置时间。为此,已经报道了基于快速小基数微环谐振器(MRR)和马赫曾德尔干涉仪(MZI)的空间切换设备,它们能够支持通过波分复用(WDM)复用的多个光信号。使用诸如构建模块之类的设备,我们基于连续的波长选择,WDM多路复用和空间交换来评估许多简单的电光交换体系结构的性能,尝试使用很少的附加硬件和很少的设备来实现平均具有良好吞吐性能的可扩展交换矩阵开关级,因此总插入损耗更低,功耗更低。这种架构简化所付出的代价是,它对此类交换结构的可行置换矩阵引入了其他约束,从而影响了某些流量模式的性能。我们讨论了性能和硬件要求之间的取舍,并根据我们的发现,提出了克服这些限制的替代架构。

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