An Energy-Efficient and Obstruction-Free Design Scheme for FSO-based Data Center Network

Wenning Lu, Bingbing Li
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Abstract

With the rapid growth of Internet applications, the massive demand for cloud services has brought challenges to data center networks (DCNs). Traditional wired DCNs adopt multi-layer structure, which makes high-layers switches easily congested. Furthermore, complex cabling in wired DCNs affects the flow of cold air, reduces the cooling efficiency and increases energy consumption. To reduce flow congestion and power consumption problems and eliminate complex wiring, in this paper we introduce an architecture for intra-DCN based on free space optic (FSO) wireless communication. The proposed scheme exploits spatial position of FSO transceivers at different heights to realize obstruction-free transmission for inter-rack requests. We formulate the transceiver arrangement problem into a mathematical model while satisfying the requirement for direct line-of-sight communication between any pair of transceiver nodes. Moreover, we evaluate the performance of the proposed scheme via simulation in terms of flow completion time, server throughput, and power consumption. Compared with traditional ones, our scheme can considerably decrease power consumption while obtaining better network performance.
基于fso的数据中心网络节能无阻碍设计方案
随着互联网应用的快速增长,对云服务的巨大需求给数据中心网络带来了挑战。传统的有线DCNs采用多层结构,使得高层交换机容易拥塞。此外,有线DCNs中的复杂布线会影响冷空气的流动,降低冷却效率并增加能耗。为了减少流量拥塞和功耗问题,并消除复杂的布线,本文介绍了一种基于自由空间光(FSO)无线通信的dcn内部架构。该方案利用FSO收发机在不同高度的空间位置,实现机架间请求的无阻碍传输。在满足任意对收发器节点之间的直接视距通信要求的情况下,将收发器排列问题转化为数学模型。此外,我们通过流完成时间、服务器吞吐量和功耗方面的仿真来评估所提出方案的性能。与传统方案相比,该方案在获得更好的网络性能的同时,大大降低了功耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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