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Joint Virtual Machine Assignment and Traffic Engineering for Green Data Center Networks

机译:绿色数据中心网络的联合虚拟机分配和流量工程

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摘要

The popularization of cloud computing brings emergency concern to the energy consumption in big data centers. Besides the servers, the energy consumed by the network in a data center is also considerable. Existing works for improving the network energy efficiency are mainly focused on traffic engineering, i.e., consolidating flows and switching off unnecessary devices, which fails to comprehensively consider the unique features in data centers. In this paper, we advocate a joint optimization for achieving energy efficiency of data center networks by proposing a unified optimization framework. In this framework, we consider to take advantage of the application characteristics and topology features, and to integrate virtual machine assignment and traffic engineering. Under this framework, we then devise two efficient algorithms, TE_VMA and TER, for assigning virtual machines and routing traffic flows respectively. Knowing the communication patterns of the applications, the TE_VMA algorithm is purposeful and can generate desirable traffic conditions for the next-step routing optimization. The TER algorithm makes full use of the hierarchical feature of the topology and is conducted on the multipath routing protocol. The performance of the overall framework is confirmed by both theoretical analysis and simulation results, where up to 50% total energy savings can be achieved, 20% more compared with traffic engineering only approaches.
机译:云计算的普及给大数据中心的能耗带来了紧急关注。除了服务器之外,数据中心中网络所消耗的能源也很可观。现有的提高网络能效的工作主要集中在流量工程上,即整合流量和关闭不必要的设备,而这不能全面考虑数据中心的独特功能。在本文中,我们提倡通过提出统一的优化框架来实现数据中心网络能源效率的联合优化。在此框架中,我们考虑利用应用程序特征和拓扑特征,并集成虚拟机分配和流量工程。然后,在此框架下,我们设计两种有效的算法TE_VMA和TER,分别用于分配虚拟机和路由流量。知道了应用程序的通信模式,TE_VMA算法是有目的的,可以为下一步的路由优化生成所需的流量条件。 TER算法充分利用了拓扑的分层功能,并在多路径路由协议上进行。理论分析和仿真结果均证实了总体框架的性能,该方法可实现高达50%的总节能量,与仅采用流量工程的方法相比,可节省20%的能耗。

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