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Passive optical interconnects based on cascading wavelength routing devices for datacenters: A cross-layer perspective

机译:基于级联波长路由设备的无源光学互连,用于数据中心:跨层视角

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摘要

A general passive optical interconnect (POI) architecture based on cascading wavelength routing devices is proposed for datacenters. An analysis shows that with a proper port configuration, the logic topology of the proposed POI is equivalent to a DCell network, which has rich connectivity, leading to a high fault tolerance. Compared with the existing arrayed waveguide grating (AWG)-based architecture, such as H-LION, the proposed architecture has a higher AWG port utilization and lower cabling complexity that result in better scalability. Meanwhile, an impairment-aware scalability analysis is carried out to estimate the impact of in-band crosstalk on the size of the POI. Furthermore, a cross-layer investigation of the proposed POI provides a guideline to select proper physical-layer implementations, including optical interface structure and design of the transceiver, for acceptable network performance. The numerical results reveal that, with a moderate number of shortest paths K and degrees of node D, (a) the bidirectional optical interface is more suitable for large-scale datacenter networks than the unidirectional one, (b) an array of fixed receivers can be replaced by just a small number of tunable receivers with negligible degradation in network performance, and (c) decreasing 50% of the tuning range of the receivers causes only a minor increase of blocking probability, which demonstrates a good balance between the complexity of the transceiver design and network performance.
机译:针对数据中心,提出了一种基于级联波长路由设备的通用无源光互连(POI)体系结构。分析表明,通过适当的端口配置,提出的POI的逻辑拓扑等效于DCell网络,该网络具有丰富的连接性,从而具有很高的容错能力。与现有的基于阵列波导光栅(AWG)的体系结构(例如H-LION)相比,所提出的体系结构具有更高的AWG端口利用率和更低的布线复杂度,从而具有更好的可扩展性。同时,进行了感知损伤的可伸缩性分析,以估计带内串扰对POI大小的影响。此外,对提议的POI的跨层研究为选择合适的物理层实现(包括光接口结构和收发器的设计)提供了指南,以实现可接受的网络性能。数值结果表明,在中等数量的最短路径K和节点D度的情况下,(a)双向光接口比单向光接口更适合于大规模数据中心网络,(b)固定接收器阵列可以可用少量的可调接收器代替,但网络性能的下降可忽略不计,并且(c)减小接收器调谐范围的50%只会导致阻塞概率略有增加,这表明在接收器的复杂度之间取得了良好的平衡。收发器设计和网络性能。

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