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Combined power and performance management of virtualized computing environments using limited lookahead control.

机译:使用有限的超前控制功能对虚拟化计算环境进行电源和性能的综合管理。

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There is growing incentive to reduce the power consumed by large-scale data centers that host online services such as banking, retail commerce, and gaming. Virtualization is a promising approach to consolidating multiple online services onto a smaller number of computing resources. A virtualized server environment allows computing resources to be shared among multiple performance-isolated platforms called virtual machines. By dynamically provisioning virtual machines, consolidating the workload, and turning servers on and off as needed, data center operators can maintain desired service-level agreements with end users while achieving higher server utilization and energy efficiency.;This thesis develops an online resource provisioning framework for combined power and performance management in a virtualized computing environment serving session-based workloads. We pose this management problem as one of sequential optimization under uncertainty and solve it using limited lookahead control (LLC), a form of model-predictive control. The approach accounts for the switching costs incurred while provisioning physical and virtual machines, and explicitly encodes the risk of provisioning resources in an uncertain and dynamic operating environment.;We experimentally validate the control framework on a multi-tier e-commerce architecture hosting multiple online services. When managed using LLC, the cluster saves, on average, 41% in power-consumption costs over a twenty-four hour period when compared to a system operating without dynamic control. The overhead of the controller is low, compared to the control interval, on the order of a few seconds. We also use trace-based simulations to analyze LLC performance on server clusters larger than our testbed, and show how concepts from approximation theory can be used to further reduce the computational burden of controlling large systems.
机译:越来越多的动机要求减少托管在线服务(例如银行,零售商业和游戏)的大型数据中心的功耗。虚拟化是将多种在线服务整合到较少数量的计算资源上的一种有前途的方法。虚拟服务器环境允许在多个称为虚拟机的性能隔离平台之间共享计算资源。通过动态配置虚拟机,整合工作负载并根据需要打开和关闭服务器,数据中心运营商可以与最终用户保持所需的服务级别协议,同时实现更高的服务器利用率和能源效率。用于在虚拟计算环境中服务于基于会话的工作负载的组合电源和性能管理。我们将此管理问题视为不确定性下的顺序优化之一,并使用有限的超前控制(LLC)(一种模型预测控制)来解决。该方法解决了在配置物理和虚拟机时发生的转换成本,并明确编码了在不确定和动态的操作环境中配置资源的风险。;我们通过实验验证了在托管多个在线状态的多层电子商务架构上的控制框架服务。与没有动态控制的系统相比,使用LLC进行管理时,群集在24小时内平均节省41%的功耗成本。与控制间隔相比,控制器的开销较低,约为几秒钟。我们还使用基于跟踪的仿真来分析比测试床更大的服务器群集上的LLC性能,并展示如何使用近似理论的概念进一步减轻控制大型系统的计算负担。

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