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Autonomic resource management in virtualized data centers using fuzzy logic-based approaches

机译:使用基于模糊逻辑的方法在虚拟化数据中心中进行自主资源管理

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Data centers, as resource providers, are expected to deliver on performance guarantees while optimizing resource utilization to reduce cost. Virtualization techniques provide the opportunity of consolidating multiple separately managed containers of virtual resources on underutilized physical servers. A key challenge that comes with virtualization is the simultaneous on-demand provisioning of shared physical resources to virtual containers and the management of their capacities to meet service-quality targets at the least cost. This paper proposes a two-level resource management system to dynamically allocate resources to individual virtual containers. It uses local controllers at the virtual-container level and a global controller at the resource-pool level. An important advantage of this two-level control architecture is that it allows independent controller designs for separately optimizing the performance of applications and the use of resources. Autonomic resource allocation is realized through the interaction of the local and global controllers. A novelty of the local controller designs is their use of fuzzy logic-based approaches to efficiently and robustly deal with the complexity and uncertainties of dynamically changing workloads and resource usage. The global controller determines the resource allocation based on a proposed profit model, with the goal of maximizing the total profit of the data center. Experimental results obtained through a prototype implementation demonstrate that, for the scenarios under consideration, the proposed resource management system can significantly reduce resource consumption while still achieving application performance targets.
机译:数据中心作为资源提供者,有望在保证性能的同时优化资源利用率以降低成本。虚拟化技术提供了在利用率不足的物理服务器上整合多个单独管理的虚拟资源容器的机会。虚拟化所面临的主要挑战是同时按需向虚拟容器提供共享的物理资源,以及对其以最低成本实现服务质量目标的能力进行管理。本文提出了一种两级资源管理系统,可以动态地将资源分配给各个虚拟容器。它在虚拟容器级别使用本地控制器,在资源池级别使用全局控制器。这种两级控制体系结构的一个重要优点是,它允许独立的控制器设计来分别优化应用程序的性能和资源的使用。自主资源分配是通过本地和全局控制器的交互来实现的。本地控制器设计的新颖之处在于,它们使用基于模糊逻辑的方法来有效,稳健地处理动态变化的工作负载和资源使用情况的复杂性和不确定性。全局控制器根据提议的利润模型确定资源分配,目的是使数据中心的总利润最大化。通过原型实现获得的实验结果表明,对于正在考虑的方案,所提出的资源管理系统可以显着减少资源消耗,同时仍然达到应用程序性能目标。

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