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VMSA: a performance preserving online VM splitting and placement algorithm in dynamic cloud environments

机译:VMSA:在动态云环境中保留性能的在线VM拆分和放置算法

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Server consolidation schemes whereby each server is replaced with a virtual machine (VM) and multiple such VMs are run on a single physical server can reduce the number of physical servers needed, and in turn, both the cost and energy consumption in data centers. However, existing schemes have not fully exploited the flexibility in the usage and allocation of virtualization resources, so as to allow one application originally deployed on a single large VM (LVM) to be split and hosted by multiple smaller VMs (SVM). Using multiple SVMs instead of an LVM enables resource allocation at a smaller granularity and thus may further increase the utilization and reduce the number of physical servers. However, a major challenge to overcome when deploying multiple SVMs for one application is to preserve the performance of the application in terms of response delay. In this paper, we show through theoretical analysis and experiments that in order to preserve the performance of the application, one needs to allocate sufficient resources to each SVM, and the total amount of resources required by all the SVMs will exceed that required by the LVM. Nevertheless, we also show that by using the proposed heuristic algorithm called VM splitting and assignment (VMSA), we can substantially improve the utilization and reduce the number of physical servers.
机译:通过服务器合并方案将每个服务器替换为虚拟机(VM),并在单个物理服务器上运行多个这样的VM,可以减少所需的物理服务器的数量,进而减少数据中心的成本和能耗。但是,现有方案尚未充分利用虚拟化资源的使用和分配的灵活性,从而无法将最初部署在单个大型VM(LVM)上的一个应用程序拆分并由多个较小的VM(SVM)托管。使用多个SVM代替LVM可以以较小的粒度分配资源,因此可以进一步提高利用率并减少物理服务器的数量。但是,在为一个应用程序部署多个SVM时要克服的主要挑战是在响应延迟方面保持应用程序的性能。在本文中,我们通过理论分析和实验表明,为了保持应用程序的性能,需要为每个SVM分配足够的资源,并且所有SVM所需的资源总量将超过LVM所需的资源总量。 。尽管如此,我们还表明,通过使用提议的启发式算法VM拆分和分配(VMSA),我们可以大大提高利用率并减少物理服务器的数量。

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