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On the coexistence of transport protocols in data centers

机译:关于数据中心中传输协议的共存

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The emergence of cloud data centers has led to the design of customized transport protocols such as Data Center TCP (DCTCP). These protocols improve the performance of cloud applications by explicitly accounting for the unique network and traffic characteristics in data centers. However, s u c h protocols have only been evaluated under greenfield deployment scenarios, where the entire data center is assumed to use the same protocol, which may not always be desirable or feasible. This leads to scenarios where these protocols coexist with TCP and thus share the same network resources. This paper considers such scenarios and presents a comprehensive study of the coexistence of DCTCP and TCP. In particular, we evaluate their bandwidth sharing properties under different active queue management schemes (AQM) including RED, DCTCP AQM, and CHOKe. Our results show that under the DCTCP AQM, DCTCP can starve TCP flows. This problem is mitigated through the use of RED, however, significant unfairness remains. Interestingly, we find that CHOKe exacerbates this unfairness. We show that a modified version of CHOKe considerably improves fairness by more accurately penalizing dominating flows.
机译:云数据中心的出现导致设计了定制的传输协议,例如数据中心TCP(DCTCP)。这些协议通过明确考虑数据中心中独特的网络和流量特性,提高了云应用程序的性能。但是,仅在未部署的部署方案下评估了这些协议,在该方案中,假定整个数据中心都使用相同的协议,这可能并不总是合乎需要或可行的。这导致这些协议与TCP共存并共享相同网络资源的场景。本文考虑了这种情况,并对DCTCP和TCP的共存进行了全面的研究。特别是,我们在包括RED,DCTCP AQM和CHOKe在内的不同活动队列管理方案(AQM)下评估它们的带宽共享属性。我们的结果表明,在DCTCP AQM下,DCTCP可以使TCP流量不足。通过使用RED可以缓解此问题,但是,仍然存在严重的不公平现象。有趣的是,我们发现CHOKe加剧了这种不公平。我们显示出修改后的CHOKe版本可以通过更精确地惩罚支配流来大大提高公平性。

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