Network architecture in the Era of integrated optics

C. Minkenberg, N. Kucharewski, G. Rodríguez
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引用次数: 5

Abstract

The reach of electric transmission lines has been shrinking with the increase of per-lane signaling rates, causing the proportion of ports that need to be optical to increase substantially. At the same time, the cost of switch ports has dropped faster than the cost of optics has, leading to a situation where the cost of the data center's network is no longer dominated by the switches but instead by the optics. We propose high-level models expressing total network cost per billions of bits per second (Gbps) per endpoint, capturing the essential cost/performance trade-offs between switch ports and optics that drives the decision of choosing one architecture over another. Given the switch radix and the target network scale, our model yields the lowest-cost Folded Clos topology for given values of the relative cost between electrical switch ports and optical ports. We also consider the potential impact of employing integrated, co-packaged optics, which opens a new space of architectural choices with the potential for significant cost and energy savings. Our analysis reveals that the conventional wisdom that "a larger switch radix is always better" does not always hold true; in some scenarios, smaller-radix devices can achieve the same scale while enabling lower cost and lower power per port. Moreover, we find that integrated optics enables a repartitioning of functionality that gives rise to a new class of switch architecture that minimizes total per-endpoint network cost.
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集成光学时代的网络架构
随着每通道信号速率的提高,输电线路的覆盖范围不断缩小,导致需要光端口的比例大幅增加。与此同时,交换机端口成本的下降速度比光学成本下降得更快,导致数据中心网络的成本不再由交换机主导,而是由光学成本主导。我们提出高级模型,表示每个端点每十亿比特每秒(Gbps)的总网络成本,捕获交换机端口和光学器件之间的基本成本/性能权衡,从而驱动选择一种架构而不是另一种架构的决策。给定交换机基数和目标网络规模,对于给定的电交换机端口和光端口之间的相对成本值,我们的模型产生了成本最低的折叠Clos拓扑。我们还考虑了采用集成、共封装光学器件的潜在影响,这为建筑选择开辟了一个新的空间,具有显著的成本和节能潜力。我们的分析表明,传统观念认为“转换基数越大越好”并不总是正确的;在某些情况下,更小基数的设备可以实现相同的规模,同时实现每个端口的更低成本和更低功耗。此外,我们发现集成光学能够重新划分功能,从而产生一种新的交换机架构,最大限度地降低每端点网络的总成本。
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