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首页> 外文期刊>Journal of Lightwave Technology >A Scalable, Partially Configurable Optical Switch for Data Center Networks
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A Scalable, Partially Configurable Optical Switch for Data Center Networks

机译:用于数据中心网络的可扩展,部分可配置的光交换机

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Optical circuit switching may be instrumental in meeting the cost, energy, and aggregate bandwidth requirements of future data center networks. However, conventional MEMS beam-steering cross-connects cannot provide submillisecond switching with the port count necessary for data centers. Here, we investigate a novel noncrossbar selector switch architecture and pupil-division switching layout to improve optical switching performance by relaxing the requirement of arbitrary switch configurability. This architecture and switch design enable MEMS beam-steering micromirrors to scale to microsecond response speeds while supporting high port count and low loss switching, and can realize a number of useful interconnection topologies. We present the design, fabrication, and experimental characterization of a proof-of-principle prototype using a single comb-driven MEMS mirror to achieve 150 μs switching of 61 ports between four preprogrammed interconnection mappings. We demonstrate the scalability of this switch architecture with a detailed optical design of a 2048-port selector switch with 20 μs switching time.
机译:光电路交换可能有助于满足未来数据中心网络的成本,能源和总带宽需求。但是,传统的MEMS波束控制交叉连接无法提供数据中心所需的端口数以毫秒为单位的切换。在这里,我们研究了一种新颖的非交叉开关选择器架构和光瞳分区切换布局,以通过放宽对任意开关可配置性的要求来提高光交换性能。这种架构和开关设计使MEMS光束控制微镜能够扩展到微秒级的响应速度,同时支持高端口数和低损耗切换,并可以实现多种有用的互连拓扑。我们介绍了使用单个梳状驱动的MEMS镜实现原理证明原型的设计,制造和实验表征,以在四个预编程的互连映射之间实现61个端口的150μs切换。我们通过具有20μs切换时间的2048端口选择器开关的详细光学设计,证明了这种开关架构的可扩展性。

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