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首页> 外文期刊>Journal of international management >Silicon Photonic Switch Topologies and Routing Strategies for Disaggregated Data Centers
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Silicon Photonic Switch Topologies and Routing Strategies for Disaggregated Data Centers

机译:硅光子开关拓扑和分类数据中心的路由策略

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Disaggregation enabled by silicon photonic switch fabrics is a path to low-cost and energy-efficient data centers. The routing strategy, which can be seamlessly incorporated into the switch control plane, potentially provides an additional dimension for the physical-layer performance optimization, at no extra cost. In this paper, we analyze the role of optical routing strategies for silicon photonic switch fabrics. We define and quantify the number of global switching states in various switching topologies and discuss their relationship to the number of switch permutations. We propose a topology-agnostic approach that is shown to optimize fabric-wide switch path power penalties and consequently reduce the dynamic-range requirement on receivers. Additionally, it potentially compensates for device fabrication variations by taking advantage of the redundancy in switching states over switch permutations; thus, increasing fabrication tolerance. Significant power penalty improvements are demonstrated via both our simulation and test platforms, even for moderate-scale silicon switches.
机译:硅光子开关面料使能的分解是低成本和节能数据中心的路径。可以无缝地纳入开关控制平面的路由策略可能为物理层性能优化提供额外的尺寸,而不额外成本。在本文中,我们分析了光学路由策略对硅光子开关织物的作用。我们在各种切换拓扑中定义和量化全局交换状态的数量,并讨论其与交换机排列数量的关系。我们提出了一种拓扑 - 不可知方法,显示用于优化面料宽开关路径功率惩罚,从而降低了接收器上的动态范围要求。另外,它可能通过利用开关排列的切换状态冗余来补偿器件制造变化;因此,增加了制造耐受性。即使对于中等级硅开关,也可以通过我们的仿真和测试平台来证明显着的功率罚款改进。

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