NINEPIN:虚拟化服务器中的非侵入性和节能性能隔离

P. Lama, Xiaobo Zhou
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引用次数: 39

摘要

虚拟化数据中心面临着异构客户应用程序之间的性能隔离这一重要但具有挑战性的问题。共置虚拟服务器之间共享资源的争用导致的性能干扰对应用程序QoS的可靠性有重要影响。我们提出并开发了NINEPIN,这是一种非侵入性和节能的性能隔离机制,可以减轻托管在虚拟化服务器上的异构应用程序之间的性能干扰。它能够提高数据中心的效用。其新颖的分层控制框架将性能隔离目标与调节系统达到最佳运行状态的激励相结合。该框架结合了基于机器学习的性能干扰和能耗自适应建模、基于效用优化的性能目标和基于目标跟踪的鲁棒模型预测控制。我们在虚拟化的HP ProLiant刀片服务器上实现NINEPIN,该服务器托管SPEC CPU2006和ruby基准测试应用程序。实验结果表明,NINEPIN优于具有代表性的性能隔离方法Q-Clouds,提高了系统的整体效用并降低了能耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
NINEPIN: Non-invasive and energy efficient performance isolation in virtualized servers
A virtualized data center faces important but challenging issue of performance isolation among heterogeneous customer applications. Performance interference resulting from the contention of shared resources among co-located virtual servers has significant impact on the dependability of application QoS. We propose and develop NINEPIN, a non-invasive and energy efficient performance isolation mechanism that mitigates performance interference among heterogeneous applications hosted in virtualized servers. It is capable of increasing data center utility. Its novel hierarchical control framework aligns performance isolation goals with the incentive to regulate the system towards optimal operating conditions. The framework combines machine learning based self-adaptive modeling of performance interference and energy consumption, utility optimization based performance targeting and a robust model predictive control based target tracking. We implement NINEPIN on a virtualized HP ProLiant blade server hosting SPEC CPU2006 and RUBiS benchmark applications. Experimental results demonstrate that NINEPIN outperforms a representative performance isolation approach, Q-Clouds, improving the overall system utility and reducing energy consumption.
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