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Adaptive Performance Control of Computing Systems via Distributed Cooperative Control: Application to Power Management in Computing Clusters

机译:通过分布式协同控制的计算系统自适应性能控制:在计算集群的电源管理中的应用

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Advanced control and optimization techniques offer a theoretically sound basis to enable self-managing behavior in distributed computing models such as utility computing. To tractably solve the performance management problems of interest, including resource allocation and provisioning in such distributed computing environments, we develop a fully decentralized control framework wherein the optimization problem for the system is first decomposed into sub-problems and each sub-problem is solved separately by individual controllers to achieve the overall performance objectives. Concepts from optimal control theory are used to implement individual controllers. The proposed framework is highly scalable, naturally tolerates controller failures and allows for the dynamic addition/removal of controllers during system operation. As a case study, we apply the control framework to minimize the power consumed by a computing cluster subject to a dynamic workload while satisfying the specified quality-of-service goals. Simulations using real-world workload traces show that the proposed technique has very low control overhead and adapts quickly to both workload variations and controller failures.
机译:先进的控制和优化技术为在实用计算等分布式计算模型中实现自我管理行为提供了理论上可靠的基础。为了轻松解决感兴趣的性能管理问题,包括此类分布式计算环境中的资源分配和配置,我们开发了一种完全分散的控制框架,其中,系统的优化问题首先分解为子问题,并且分别解决了每个子问题由单个控制器来实现整体性能目标。最佳控制理论的概念用于实现单个控​​制器。所提出的框架具有高度的可扩展性,自然可以容忍控制器故障,并允许在系统运行期间动态添加/删除控制器。作为案例研究,我们将使用控制框架来最大程度地减少计算集群在动态工作负载的情况下所消耗的功率,同时满足指定的服务质量目标。使用实际工作负载跟踪进行的仿真表明,所提出的技术具有非常低的控制开销,并且可以快速适应工作负载变化和控制器故障。

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