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MMPTCP: a novel transport protocol for data centre networks

机译:mmpTCp:一种用于数据中心网络的新型传输协议

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摘要

Modern data centres provide large aggregate capacity in the backbone of networks so that servers can theoretically communicate with each other at their maximum rates. However, the Transport Control Protocol (TCP) cannot efficiently use this large capacity even if Equal-Cost Multi-Path (ECMP) routing is enabled to exploit the existence of parallel paths. MultiPath TCP (MPTCP) can effectively use the network resources of such topologies by performing fast distributed load balancing. MPTCP is an appealing technique for data centres that are very dynamic in nature. However, it is ill-suited for handling short flows since it increases their flow completion time.udTo mitigate these problems, we propose Maximum MultiPath TCP (MMPTCP), a novel transport protocol for modern data centres. Unlike MPTCP, it provides high performance for all network flows. It also decreases the bursty nature of data centres, which is essentially rooted in traffic patterns of short flows. MMPTCP achieves these nice features by randomising a flow’s packets via all parallel paths to a destination during the initial phase of data transmission until a certain amount of data is delivered. It then switches to MPTCP with several subflows in which data transmission is governed by MPTCP congestion control. In this way, short flows are delivered very fast via the initial phase only, and long flows are delivered by MPTCP with several subflows.udWe evaluate MMPTCP in a FatTree topology under various network conditions. We found that MMPTCP decreases the loss rate of all the links throughout the network and helps competing flows to achieve a better performance. Unlike MPTCP with a fixed number of subflows, MMPTCP offers high burst tolerance and low-latency for short flows while it maintains high overall network utilisation. MMPTCP is incrementally deployable in existing data centres because it does not require any modification to the network and application layers.
机译:现代数据中心在网络的骨干网中提供了较大的聚合容量,因此服务器理论上可以以最大速率相互通信。但是,即使启用了等价多路径(ECMP)路由来利用并行路径的存在,传输控制协议(TCP)也无法有效地使用这种大容量。通过执行快速的分布式负载平衡,MultiPath TCP(MPTCP)可以有效地使用此类拓扑的网络资源。对于本质上非常动态的数据中心,MPTCP是一种有吸引力的技术。但是,由于它会增加流的完成时间,因此不适合处理短流。 ud为了缓解这些问题,我们提出了最大多路径TCP(MMPTCP),这是一种用于现代数据中心的新颖传输协议。与MPTCP不同,它为所有网络流提供高性能。这也降低了数据中心的突发性,本质上源于短流量的流量模式。 MMPTCP通过在数据传输的初始阶段通过流到目的地的所有并行路径的数据包进行随机化,直到传递了一定数量的数据,来实现这些出色的功能。然后,它通过几个子流切换到MPTCP,其中数据传输由MPTCP拥塞控制来控制。这样,短流仅通过初始阶段就可以非常快地交付,长流则通过带有几个子流的MPTCP交付。 ud我们在各种网络条件下的FatTree拓扑中评估MMPTCP。我们发现MMPTCP降低了整个网络中所有链路的丢失率,并有助于竞争流以实现更好的性能。与具有固定数量的子流的MPTCP不同,MMPTCP在保持较高的总体网络利用率的同时,为短流提供了高突发耐受性和低延迟。 MMPTCP可以增量部署在现有数据中心中,因为它不需要对网络和应用程序层进行任何修改。

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