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Acquisition of Virtual Machines for Tiered Applications with Availability Constraints

机译:获取具有可用性约束的分层应用程序的虚拟机

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Deploying and managing a high availability tiered application in the cloud is a challenging task because it requires determining and buying enough number of VMs dynamically such that the application is available. An application is available if it is working and it can respond in a timely manner for varying workloads. For a given workload, we will need a minimum number of working copies for each server and the minimum computing power of VMs necessary to run those copies for meeting the response time requirement. Otherwise, we will end up with response time failures. In this work, we assume that each software server of an application is replicated into one or more copies and each copy runs on a separate virtual machine (VM). VMs can be of different types depending on their computing power, availability and cost. This paper presents a novel optimization model to determine the number and types of VMs needed for each server that minimizes the cost and at the same time guarantees the availability SLA (service-level agreement). The results demonstrate that it is more cost effective to have a mixture of different types of VMs for running the copies of a server rather than restricting the copies to run on a single type of VMs. The results further demonstrate that the decision to buy only the cheapest VMs for an application is not always better cost-wise.
机译:在云中部署和管理高可用性分层应用程序是一个具有挑战性的任务,因为它需要动态确定和购买足够数量的VM,使得应用程序可用。如果它正在运行,则可以使用应用程序,并且可以及时响应不同的工作负载。对于给定的工作负载,我们将需要每个服务器的最小工作副本以及运行这些副本所需的VM的最小计算能力,以满足响应时间要求。否则,我们将最终响应时间失败。在这项工作中,我们假设应用程序的每个软件服务器都被复制到一个或多个副本中,并且每个复制在单独的虚拟机(VM)上运行。根据其计算功率,可用性和成本,VM可能具有不同类型的类型。本文介绍了一种新颖的优化模型,用于确定每个服务器所需的VM的数量和类型,最小化成本,同时保证可用性SLA(服务级别协议)。结果表明,对于运行服务器的副本而不是限制副本以在单个类型的VM上运行,它更具成本效益。结果进一步证明,仅为申请购买最便宜的VM并不总是更好的成本明智。

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