A cyber-physical systems approach to energy management in data centers

L. Parolini, N. Tolia, B. Sinopoli, B. Krogh
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引用次数: 97

Abstract

This paper presents a new control strategy for data centers that aims to optimize the trade-off between maximizing the payoff from the provided quality of computational services and minimizing energy costs for computation and cooling. The data center is modeled as two interacting dynamic networks: a computational (cyber) network representing the distribution and flow of computational tasks, and a thermal (physical) network characterizing the distribution and flow of thermal energy. To make the problem tractable, the control architecture is decomposed hierarchically according to time-scales in the thermal and computational network dynamics, and spatially, reflecting weak coupling between zones in the data center. Simulation results demonstrate the effectiveness of the proposed coordinated control strategy relative to traditional approaches in which the cyber and physical resources are controlled independently.
数据中心能源管理的网络物理系统方法
本文提出了一种新的数据中心控制策略,旨在优化从所提供的计算服务质量中获得最大收益和最小化计算和冷却的能源成本之间的权衡。数据中心被建模为两个相互作用的动态网络:一个是表示计算任务分布和流动的计算(网络)网络,另一个是表征热能分布和流动的热(物理)网络。为了使问题易于处理,控制体系结构在热动力学和计算网络动力学上按时间尺度分层分解,并在空间上反映数据中心区域之间的弱耦合。仿真结果表明,相对于网络资源和物理资源独立控制的传统方法,所提出的协调控制策略是有效的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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