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Towards autonomic detection of SLA violations in Cloud infrastructures

机译:致力于自动检测云基础架构中违反SLA的行为

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Cloud computing has become a popular paradigm for implementing scalable computing infrastructures provided on-demand on a case-by-case basis. Self-manageable Cloud infrastructures are required in order to comply with users' requirements defined by Service Level Agreements (SLAs) and to minimize user interactions with the computing environment. Thus, adequate SLA monitoring strategies and timely detection of possible SLA violations represent challenging research issues. This paper presents the Detecting SLA Violation infrastructure (DeSVi) architecture, sensing SLA violations through sophisticated resource monitoring. Based on the user requests, DeSVi allocates computing resources for a requested service and arranges its deployment on a virtualized environment. Resources are monitored using a novel framework capable of mapping low-level resource metrics (e.g., host up and down time) to user-defined SLAs (e.g., service availability). The detection of possible SLA violations relies on the predefined service level objectives and utilization of knowledge databases to manage and prevent such violations. We evaluate the DeSVi architecture using two application scenarios: (i) image rendering applications based on ray-tracing, and (ii) transactional web applications based on the well-known TPC-W benchmark. These applications exhibit heterogeneous workloads for investigating optimal monitoring interval of SLA parameters. The achieved results show that our architecture is able to monitor and detect SLA violations. The architecture output also provides a guideline on the appropriate monitoring intervals for applications depending on their resource consumption behavior.
机译:云计算已成为一种流行的范例,用于实现基于案例的按需提供的可伸缩计算基础架构。为了满足服务水平协议(SLA)定义的用户要求并最大程度地减少用户与计算环境的交互,需要使用可自我管理的云基础架构。因此,适当的SLA监视策略和及时发现可能违反SLA的行为代表了具有挑战性的研究问题。本文介绍了检测SLA违规基础结构(DeSVi)的体系结构,它通过复杂的资源监视来感知SLA违规情况。根据用户请求,DeSVi为请求的服务分配计算资源,并在虚拟环境中安排部署。使用能够将低级资源度量(例如,主机启动和停机时间)映射到用户定义的SLA(例如,服务可用性)的新颖框架来监视资源。对可能的SLA违规的检测依赖于预定义的服务级别目标以及对知识数据库的利用来管理和防止此类违规。我们使用两种应用场景评估DeSVi架构:(i)基于光线跟踪的图像渲染应用程序,以及(ii)基于著名的TPC-W基准测试的交易Web应用程序。这些应用程序展示了用于研究SLA参数的最佳监视间隔的异构工作负载。取得的结果表明,我们的体系结构能够监视和检测违反SLA的行为。体系结构输出还根据应用程序的资源消耗行为为应用程序提供了适当的监视间隔指南。

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