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Optical interconnects at the top of the rack for energy-efficient data centers

机译:机架顶部的光互连用于节能数据中心

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The growing popularity of cloud and multimedia services is dramatically increasing the traffic volume that each data center needs to handle. This is driving the demand for highly scalable, flexible, and energy-efficient networks inside data centers, in particular for the edge tier, which requires a large number of interconnects and consumes the dominant part of the overall power. Optical fiber communication is widely recognized as the highest energy- and cost-efficient technique to offer ultra-large capacity for telecommunication networks. It has also been considered as a promising transmission technology for future data center applications. Taking into account the characteristics of the traffic generated by the servers, such as locality, multicast, dynamicity, and burstiness, the emphasis of the research on data center networks has to be put on architectures that leverage optical transport to the greatest possible extent. However, no feasible solution based on optical switching is available so far for handling the data center traffic at the edge tier. Therefore, apart from conventional optical switching, we investigate a completely different paradigm, passive optical interconnects, and aim to explore the possibility for optical interconnects at the top of the rack. In this article, we present three major types of passive optical interconnects and carry out a performance assessment with respect to the ability to host data center traffic, scalability, optical power budget, complexity of the required interface, cost, and energy consumption. Our results have verified that the investigated passive optical interconnects can achieve a significant reduction of power consumption and maintain cost at a similar level compared to its electronic counterpart. Furthermore, several research directions on passive optical interconnects have been pointed out for future green data centers.
机译:云和多媒体服务的日益普及极大地增加了每个数据中心需要处理的流量。这推动了对数据中心内部(尤其是边缘层)高度可扩展,灵活且节能的网络的需求,这需要大量互连,并消耗了整体电源的主要部分。光纤通信被公认为是为电信网络提供超大容量的最高能源和成本效益的技术。它也被认为是未来数据中心应用的有前途的传输技术。考虑到服务器生成的流量的特性,例如位置,多播,动态性和突发性,必须将对数据中心网络的研究重点放在最大程度利用光传输的体系结构上。但是,到目前为止,尚没有基于光交换的可行解决方案来处理边缘层的数据中心流量。因此,除了传统的光交换之外,我们研究了一种完全不同的范例,即无源光互连,并旨在探索机架顶部的光互连的可能性。在本文中,我们介绍了三种主要类型的无源光互连,并就承载数据中心流量,可伸缩性,光功率预算,所需接口的复杂性,成本和能耗进行了性能评估。我们的结果证明,与电子同类产品相比,所研究的无源光学互连可以显着降低功耗并将成本保持在相似水平。此外,已经为未来的绿色数据中心指出了无源光互连的几个研究方向。

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