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Adaptive resource provisioning for read intensive multi-tier applications in the cloud

机译:针对云中读取密集型多层应用程序的自适应资源配置

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摘要

A Service-Level Agreement (SLA) provides surety for specific quality attributes to the consumers of services. However, current SLAs offered by cloud infrastructure providers do not address response time, which, from the user's point of view, is the most important quality attribute for Web applications. Satisfying a maximum average response time guarantee for Web applications is difficult for two main reasons: first, traffic patterns are highly dynamic and difficult to predict accurately; second, the complex nature of multi-tier Web applications increases the difficulty of identifying bottlenecks and resolving them automatically. This paper proposes a methodology and presents a working prototype system for automatic detection and resolution of bottlenecks in a multi-tier Web application hosted on a cloud in order to satisfy specific maximum response time requirements. It also proposes a method for identifying and retracting over-provisioned resources in multi-tier cloud-hosted Web applications. We demonstrate the feasibility of the approach in an experimental evaluation with a testbed EUCALYPTUS-based cloud and a synthetic workload. Automatic bottleneck detection and resolution under dynamic resource management has the potential to enable cloud infrastructure providers to provide SLAs for Web applications that guarantee specific response time requirements while minimizing resource utilization.
机译:服务级别协议(SLA)向服务使用者提供特定质量属性的保证。但是,由云基础架构提供商提供的当前SLA不能解决响应时间,从用户的角度来看,响应时间是Web应用程序最重要的质量属性。满足Web应用程序的最大平均响应时间保证是困难的,主要有两个原因:首先,流量模式具有很高的动态性,并且难以准确预测。其次,多层Web应用程序的复杂性增加了识别瓶颈并自动解决瓶颈的难度。本文提出了一种方法,并提出了一种工作原型系​​统,用于自动检测和解决托管在云中的多层Web应用程序中的瓶颈,以满足特定的最大响应时间要求。它还提出了一种方法,用于在多层云托管的Web应用程序中标识和收回超额配置的资源。我们用基于EUCALYPTUS的云平台和综合工作负载进行实验评估,证明了该方法的可行性。动态资源管理下的自动瓶颈检测和解决方案可能使云基础架构提供商能够为Web应用程序提供SLA,以确保特定的响应时间要求,同时将资源利用率降至最低。

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