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Cooling Control of Data Centers Using Linear Quadratic Regulators

机译:使用线性二次调节器的数据中心冷却控制

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One of the largest contributions to a data center's power usage is its cooling system. One way to decrease the energy usage of a cooling systems by introducing an automatic control adapting the capacity of cooling units is addressed by this paper. Firstly, different configurations of linear quadratic regulators are designed and then evaluated using the nonlinear data center simulator. Design of the controllers is based on the novel idea of regulating the outlet temperature and volumetric airflow of the Computer Room Air Handler units which regulate the cooling power supplied to the servers. As controlled variables for the feedback, maximum and mean temperature of servers were used. Evaluation of controllers performance is based on their estimated energy usage as well as on analysis of the servers temperature profiles with respect to the given data centers temperature threshold value. Numerical experiments include five LQR controllers with different combination of manipulated variables and analyze their performances. Results of the experiments show that the regulator with maximum servers temperature as a feedback and Computer Room Air Handler Output temperature as manipulated variable has the best performance. Controlling the maximum server temperature minimizes hot spots occurrences and allows to operate the cooling system with minimal energy consumption.
机译:冷却系统是数据中心用电量的最大贡献之一。本文介绍了一种通过引入自动控制来适应冷却装置容量来减少冷却系统能耗的方法。首先,设计非线性二次调节器的不同配置,然后使用非线性数据中心模拟器进行评估。控制器的设计基于调节计算机机房空气处理器单元的出口温度和空气流量的新颖思想,计算机机房空气处理器单元调节提供给服务器的冷却功率。作为反馈的控制变量,使用服务器的最高温度和平均温度。控制器性能的评估基于其估计的能源使用情况以及相对于给定数据中心温度阈值的服务器温度曲线分析。数值实验包括五个具有不同控制变量组合的LQR控制器,并分析了它们的性能。实验结果表明,以服务器最高温度作为反馈,计算机机房空气处理器输出温度作为调节变量的调节器具有最佳性能。控制服务器的最高温度可以最大程度地减少热点的发生,并允许以最低的能耗运行冷却系统。

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