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Toward A Scalable, Fault-Tolerant, High-Performance Optical Data Center Architecture

机译:迈向可扩展,容错,高性能的光学数据中心架构

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Optical data center networks (DCNs) are becoming increasingly attractive due to their technological strengths compared with the traditional electrical networks. However, existing optical DCNs are either hard to scale, vulnerable to single point of failure, or provide limited network bisection bandwidth for many practical data center workloads. To this end, we present WaveCube, a scalable, fault-tolerant, high-performance optical DCN architecture. To scale, WaveCube removes MEMS, a potential bottleneck, from its design. WaveCube is fault-tolerant, since it does not have single point of failure and there are multiple node-disjoint parallel paths between any pair of top-of-rack switches. WaveCube delivers high performance by exploiting multi-pathing and dynamic link bandwidth along the path. For example, our evaluation results show that, in terms of network bisection bandwidth, WaveCube outperforms prior optical DCNs by up to 400% and is 70%–85% of the ideal non-blocking network (ı.e., theoretical upper bound) under both realistic and synthetic traffic patterns. WaveCube’s performance degrades gracefully under failures—it drops 20% even with 20% links cut. WaveCube also holds promise in practice—its wiring complexity is orders of magnitude lower than Fattree, BCube, and c-Through at scale, and its power consumption is 35% of them.
机译:与传统的电气网络相比,光学数据中心网络(DCN)由于其技术优势而变得越来越有吸引力。但是,现有的光学DCN难以扩展,容易遭受单点故障,或者为许多实际的数据中心工作负载提供有限的网络二分频带宽。为此,我们提出了WaveCube,这是一种可扩展的,容错的高性能光学DCN架构。从规模上讲,WaveCube消除了MEMS的潜在瓶颈。 WaveCube是容错的,因为它没有单点故障,并且在任何一对机架顶交换机之间都有多个节点不相交的并行路径。 WaveCube通过沿路径使用多路径和动态链接带宽来提供高性能。例如,我们的评估结果表明,就网络二分频带宽而言,WaveCube的性能比以前的光学DCN高出400%,并且是理想无阻塞网络(即理论上限)的70%–85%在现实和综合流量模式下。在发生故障时,WaveCube的性能会正常降低-即使断开20%的链接,它也会下降20%。 WaveCube在实践中也很有希望,其布线复杂度比Fattree,BCube和c-Through规模低几个数量级,其功耗仅为其中的35%。

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