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Mechanisms for SLA provisioning in cloud-based service providers

机译:基于云的服务提供商中的SLA设置机制

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A challenge in cloud resource management is to design self-adaptable solutions capable to react to unpredictable workload fluctuations and changing utility principles. This paper analyzes the problem from the perspective of an Application Service Provider (ASP) that uses a cloud infrastructure to achieve scalable provisioning of its services in the respect of QpS constraints. First we draw a taxonomy of IaaS provider and use the identified features to drive the design of four autonomic service management architectures differing on the degree of control an ASP have on the system. We implemented two of this solutions and related mechanism to test five different resource provisioning policies. The implemented testbed has been evaluated under a realistic workload based on Wikipedia access traces on Amazon EC2 platform. The experimental evaluation performed confirms that: the proposed policies are capable to properly dimension the system resources making the whole system self-adaptable respect to the workload fluctuation. Moreover, having full control over the resource management plan allow to save up to the 32% of resource allocation cost always in the respect of SLA constraints.
机译:云资源管理中的一个挑战是设计能够对不可预测的工作负载波动和不断变化的效用原则做出反应的自适应解决方案。本文从应用服务提供商(ASP)的角度分析了该问题,该服务提供商使用云基础结构来实现有关QpS约束的可扩展服务配置。首先,我们对IaaS提供程序进行分类,并使用已识别的功能来驱动四种自主服务管理体系结构的设计,这些体系结构的不同之处在于ASP对系统的控制程度。我们实施了其中两个解决方案以及相关机制来测试五种不同的资源供应策略。已基于Amazon EC2平台上的Wikipedia访问跟踪在实际工作负载下评估了已实现的测试平台。进行的实验评估证实:所提出的策略能够适当地调整系统资源的大小,从而使整个系统相对于工作负载波动而言是自适应的。此外,对资源管理计划的完全控制允许就SLA约束而言始终可以节省多达32%的资源分配成本。

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