Management of fault tolerance and traffic congestion in cloud data center

Humphrey Emesowum, Athanasios Paraskelidis, M. Adda
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引用次数: 2

Abstract

In this era of ubiquitous computing, coupled with the emergence of big data and internet of things, there have been constant changes in every aspect of cloud data center communications — its network connectivity, data storage, data transfer, and architectural design. As a result of this, the amount of data transferable, and the frequency of data transfer have tremendously increased; causing device failures and traffic congestions. To cope with these changes so that performance can be sustained amidst device failures and traffic congestion, the design of fault tolerant cloud data center is important. A fault tolerant cloud data center network should be able to provide alternative paths from source to destination during failures so that there will not be abrupt fall in performance. But still with the ongoing researches in this regard, there has not been a robust cloud data center design that can boast of being suitable for alleviating the poor fault tolerance of cloud data center. In this paper, we proposed the improved versions of fat-tree interconnection hybrid designs derived from the structure called Z-fat tree; to address the issues of fault tolerance. Then, we compared these designs with single fat tree architecture with the same amount of resources for client server communication pattern such as Email application in a cloud data center. The simulation results obtained based on failed switches and links, show that our proposed hybrid designs outperformed the single fat tree design as the inter arrival time of the packets reduces.
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云数据中心的容错与流量拥塞管理
在这个普适计算时代,再加上大数据和物联网的出现,云数据中心通信的网络连接、数据存储、数据传输、架构设计等各个方面都在不断变化。因此,可传输的数据量和数据传输的频率大大增加;导致设备故障和流量拥塞。为了应对这些变化,以便在设备故障和流量拥塞的情况下保持性能,容错云数据中心的设计非常重要。容错的云数据中心网络应该能够在故障期间提供从源到目的地的替代路径,这样性能就不会突然下降。但是,随着这方面的研究仍在进行,目前还没有一种健壮的云数据中心设计可以称得上是适合缓解云数据中心较差的容错能力。在本文中,我们提出了基于z -脂肪树结构的脂肪树互连杂交设计的改进版本;解决容错问题。然后,我们将这些设计与具有相同资源量的单一胖树架构进行比较,用于云数据中心中客户端和服务器通信模式(如Email应用程序)。基于故障交换和链路的仿真结果表明,随着分组间到达时间的减少,我们提出的混合设计优于单一胖树设计。
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