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SDN-based dynamic multipath forwarding for inter-data center networking

机译:用于数据中心间网络的基于SDN的动态多路径转发

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Since traffic engineering (TE) in Software Defined Networking (SDN) can be much more efficiently and intelligently implemented, Multipath in SDN becomes a new option. However, Ternary Content Addressable Memory (TCAM) size become the bottleneck of SDN. In this paper, we propose an SDN-based Dynamic Flowentry-Saving Multipath (DFSM) mechanism for inter-DC WAN traffic forwarding. DFSM adopts source-destination-based multipath forwarding and latency-aware flow-based traffic splitting to save flow entries and achieve better load balancing. Our evaluations indicate that DFSM saves 15% to 30% system flow entries in different topologies compared to label-based tunneling, and also reduces average latency by 10% to 48% by consuming 8% to 20% more flow entries than Equal-Cost Multipath (ECMP) in less-interconnected topologies. In addition, compared to even traffic splitting, DFSM reduces the standard deviation of path latencies from 14% to 7%.
机译:由于可以更有效,更智能地实施软件定义网络(SDN)中的流量工程(TE),因此SDN中的多路径成为一种新的选择。但是,三进制内容可寻址内存(TCAM)的大小成为SDN的瓶颈。在本文中,我们提出了一种用于DC间WAN流量转发的基于SDN的动态流保存多路径(DFSM)机制。 DFSM采用基于源目的地的多路径转发和基于延迟的基于流的流量拆分,以节省流条目并实现更好的负载平衡。我们的评估表明,与基于标签的隧道相比,DFSM在不同的拓扑结构中节省了15%至30%的系统流条目,并且通过消耗8%至20%的流,还使平均延迟减少了10%至48%相互连接较少的拓扑中的等价多路径(ECMP)条目。此外,与平均流量分割相比,DFSM可以将路径延迟的标准偏差从14%降低到7%。

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