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Power Usage Effectiveness analysis and optimization in the INFN CNAF Tier-1 data center infrastructure

机译:INFN CNAF Tier-1数据中心基础架构中的电源使用效率分析和优化

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The accurate calculation of the power usage effectiveness (PUE) is the most important factor when trying to analyse the overall efficiency of the power consumption in a big data center. In the INFN CNAF Tier-1 a new monitoring infrastructure, also known as Building Management System (BMS), has been recently implemented using the Schneider StruxureWare? Building Operation (SBO) software. During the design phase of this new BMS, a great attention was given to the possibility of collecting several detailed information about the electric absorption of specific devices and parts of the facility. Considering the annual trends and the demands for reducing the operating costs it became clear that some improvements were certainly needed in the very short time. For this reason, a hardware upgrade of the cooling chillers and related chilled water pumps distribution system was seriously considered using innovative cooling technology. We focused on chillers using the Danfoss Turbocor centrifugal compressors technology that uses magnetic levitation and an oil-free approach for obtaining the best efficiency. Subsequently, we studied a solution that could easily compensate the initial investment during the first years of usage (considering the Total Cost of Ownership of the project) and that will improve the overall PUE of our data center.
机译:尝试分析大数据中心的整体功耗效率时,最重要的因素是准确计算用电效率(PUE)。在INFN CNAF Tier-1中,最近使用Schneider StruxureWare™实现了一种新的监控基础架构,也称为楼宇管理系统(BMS)。楼宇运营(SBO)软件。在这种新的BMS的设计阶段中,我们非常重视收集有关特定设备和设施部件的电吸收的一些详细信息的可能性。考虑到年度趋势和降低运营成本的需求,很明显,肯定需要在很短的时间内进行一些改进。因此,使用创新的冷却技术认真考虑了冷却冷却器和相关冷却水泵分配系统的硬件升级。我们专注于使用丹佛斯Turbocor离心压缩机技术的制冷机,该技术利用磁悬浮和无油方法来获得最佳效率。随后,我们研究了一种解决方案,该解决方案可以在使用的头几年轻松补偿初始投资(考虑项目的总拥有成本),并且可以改善数据中心的整体PUE。

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