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Space Shuffle: A Scalable, Flexible, and High-Bandwidth Data Center Network

机译:随机播放:可扩展,灵活且高带宽的数据中心网络

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Data center applications require the network to be scalable and bandwidth-rich. Current data center network architectures often use rigid topologies to increase network bandwidth. A major limitation is that they can hardly support incremental network growth. Recent studies propose to use random interconnects to provide growth flexibility. However, routing on a random topology suffers from control and data plane scalability problems, because routing decisions require global information and forwarding state cannot be aggregated. In this paper, we design a novel flexible data center network architecture, Space Shuffle (S2), which applies greedy routing on multiple ring spaces to achieve high-throughput, scalability, and flexibility. The proposed greedy routing protocol of S2 effectively exploits the path diversity of densely connected topologies and enables key-based routing. Extensive experimental studies show that S2 provides high bisectional bandwidth and throughput, near-optimal routing path lengths, extremely small forwarding state, fairness among concurrent data flows, and resiliency to network failures.
机译:数据中心应用程序要求网络具有可伸缩性和丰富的带宽。当前的数据中心网络体系结构通常使用刚性拓扑来增加网络带宽。一个主要的限制是它们几乎不能支持增量网络的增长。最近的研究提出使用随机互连来提供增长的灵活性。但是,在随机拓扑上进行路由会遇到控制和数据平面可伸缩性问题,因为路由决策需要全局信息,并且无法汇总转发状态。在本文中,我们设计了一种新颖的灵活数据中心网络架构Space Shuffle(S2),该架构将贪婪路由应用于多个环形空间以实现高吞吐量,可伸缩性和灵活性。提出的S2贪婪路由协议有效地利用了密集连接拓扑的路径多样性,并实现了基于密钥的路由。大量的实验研究表明,S2具有较高的对等带宽和吞吐量,接近最佳的路由路径长度,极小的转发状态,并发数据流之间的公平性以及对网络故障的恢复能力。

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