MCTCP:软件定义网络中的拥塞感知和鲁棒多播TCP

Tingwei Zhu, F. Wang, Yu Hua, D. Feng, Yong Wan, Qingyu Shi, Yanwen Xie
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引用次数: 20

摘要

数据中心中不断丰富的分布式系统以推式一对多组模式产生了大量的网络流量,对组播传输的效率和鲁棒性提出了新的要求。现有的可靠组播解决方案,无论是主机端协议还是组播路由,都存在鲁棒性低、效率低的问题,不适合数据中心。为了解决低效率和低鲁棒性的问题,我们提出了一种主要针对基于sdn的数据中心中的小团体的发送方发起的、高效、拥塞感知和鲁棒可靠的多播解决方案,称为MCTCP。MCTCP的主要思想是以集中的方式管理多播组,并通过将TCP扩展为主机端协议和在sdn控制器中管理多播组来响应地将多播流调度到活动和低利用率链路上。组播生成树根据网络的实际情况进行计算和调整,以更好地分配资源。实验表明,MCTCP可以动态绕过拥塞和故障链路,具有较高的效率和鲁棒性。因此,MCTCP优于最先进的可靠多播方案。此外,与原来的和基于TCP-SMO的相比,MCTCP提高了HDFS中数据复制的性能,例如在带宽方面分别提高了101%和50%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
MCTCP: Congestion-aware and robust multicast TCP in Software-Defined networks
Continuously enriched distributed systems in data centers generate much network traffic in push-style one-to-many group mode, raising new requirements for multicast transport in terms of efficiency and robustness. Existing reliable multicast solutions, which suffer from low robustness and inefficiency in either host-side protocols or multicast routing, are not suitable for data centers. In order to address the problems of inefficiency and low robustness, we present a sender-initiated, efficient, congestion-aware and robust reliable multicast solution mainly for small groups in SDN-based data centers, called MCTCP. The main idea behind MCTCP is to manage the multicast groups in a centralized manner, and reactively schedule multicast flows to active and low-utilized links, by extending TCP as the host-side protocol and managing multicast groups in the SDN-controller. The multicast spanning trees are calculated and adjusted according to the network status to perform a better allocation of resources. Our experiments show that, MCTCP can dynamically bypass the congested and failing links, achieving high efficiency and robustness. As a result, MCTCP outperforms the state-of-the-art reliable multicast schemes. Moreover, MCTCP improves the performance of data replication in HDFS compared with the original and TCP-SMO based ones, e.g., achieves 101% and 50% improvements in terms of bandwidth, respectively.
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