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Power and Performance Management in Nonlinear Virtualized Computing Systems via Predictive Control

机译:基于预测控制的非线性虚拟计算系统的电源和性能管理

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摘要

The problem of power and performance management captures growing research interest in both academic and industrial field. Virtulization, as an advanced technology to conserve energy, has become basic architecture for most data centers. Accordingly, more sophisticated and finer control are desired in virtualized computing systems, where multiple types of control actions exist as well as time delay effect, which make it complicated to formulate and solve the problem. Furthermore, because of improvement on chips and reduction of idle power, power consumption in modern machines shows significant nonlinearity, making linear power models(which is commonly adopted in previous work) no longer suitable. To deal with this, we build a discrete system state model, in which all control actions and time delay effect are included by state transition and performance and power can be defined on each state. Then, we design the predictive controller, via which the quadratic cost function integrating performance and power can be dynamically optimized. Experiment results show the effectiveness of the controller. By choosing a moderate weight, a good balance can be achieved between performance and power: 99.76% requirements can be dealt with and power consumption can be saved by 33% comparing to the case with open loop controller.
机译:电源和性能管理问题引起了学术界和工业界越来越多的研究兴趣。虚拟化作为一种​​节能的先进技术,已经成为大多数数据中心的基本体系结构。因此,在虚拟化的计算机系统中,需要更加复杂和精细的控制,在虚拟化的计算机系统中,存在多种类型的控制动作以及时间延迟效应,这使得制定和解决问题变得复杂。此外,由于芯片的改进和空闲功率的减少,现代机器的功耗表现出明显的非线性,使得线性功率模型(在先前的工作中通常采用)不再适用。为了解决这个问题,我们建立了一个离散的系统状态模型,其中所有控制动作和时延效应都包含在状态转换中,并且可以在每个状态上定义性能和功率。然后,我们设计了预测控制器,通过它可以动态优化集成了性能和功率的二次成本函数。实验结果表明了该控制器的有效性。通过选择适中的重量,可以在性能和功率之间达到良好的平衡:与开环控制器相比,可以满足99.76%的要求,并且可以节省33%的功耗。

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  • 作者

    Chengjian Wen; Yifen Mu;

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  • 年(卷),期 -1(10),7
  • 年度 -1
  • 页码 e0134017
  • 总页数 18
  • 原文格式 PDF
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