数据中心冷却系统自动化的信息物理设计

A. Mousavi, V. Vyatkin, Y. Berezovskaya, Xiaojing Zhang
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引用次数: 12

摘要

现代数据中心在许多方面类似于工业工厂,通过消耗大量能源产生大量热量,并且需要强大的冷却和通风。冷却系统的能耗占数据中心总能耗的30% ~ 50%。解决此类冷却系统能源效率的有效方法是应用先进的自动化解决方案,类似于工业和楼宇自动化系统。然而,现有的自动化解决方案不够灵活,无法满足现代数据中心冷却系统的要求。本文试图利用分布式自适应自动化架构来提高制冷系统的能效。所提出的自动化算法在模拟服务器机房热行为的仿真环境中得到验证,并有助于找到最节能的控制策略来控制冷却设备。本文介绍了由MATLAB/SIMULINK中的热行为建模与IEC 61499标准的分布式控制环境闭环连接组成的仿真工具。本文描述了在一定约束条件下使用所提出的工具对典型服务器机房进行的仿真,并给出了仿真结果。结果表明,在控制冷却系统方面,提高能源效率、灵活性和更好的决策能力是有潜力的。
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Cyber-physical Design of Data Centers Cooling Systems Automation
Modern data centers in many aspects are akin to industrial plants that generate a lot of heat by consuming substantial amount of energy and require powerful cooling and ventilation. Cooling system contributes with 30 to 50% of the total energy consumption of data centers. An effective way to address energy efficiency in such cooling systems is to apply advanced automation solutions, similar to that of industrial and building automation systems. However, existing automation solutions are not flexible enough to meet requirements of cooling systems in modern data centres. This paper is an endeavour to utilize distributed adaptive automation architecture in order to improve energy efficiency of cooling. The proposed automation algorithms are validated in a simulation environment which models the thermal behaviour of a server room and helps to find the most energy efficient control strategy for controlling the cooling devices. This paper describes the simulation tool comprising of thermal behaviour modelling in MATLAB/SIMULINK connected in closed-loop with the distributed control environment of IEC 61499 standard. Simulation of a typical server room under certain constraints using the proposed tool is described and the results are presented. The results demonstrate the potential of improving higher energy efficiency, flexibility and better decision-making ability for controlling the cooling systems.
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