UPS系统:未来的技术和拓扑结构如何提高数据中心的能源效率?

M. Milad, M. Darwish
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引用次数: 13

摘要

数据中心可以由大量联网服务器和相关的配电、网络和冷却设备组成。所有这些应用都消耗了大量的能源,这导致了能源效率低下问题的显著增加。不间断电源UPS (uninterrupted power supply)是造成数据中心能源分配效率低下的原因之一。UPS系统是连接主电源和终端关键负载之间的备用电源或备用电源,为敏感负载提供备用电源和保护。本研究试图回答未来UPS拓扑和技术如何提高数据中心效率的问题。为了分析不同UPS技术及其运行效率的影响,开发了一个中型数据中心的模型,并创建了负载时间表和工作原理图,以分析和测试每个UPS系统拓扑的组件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
UPS system: How can future technology and topology improve the energy efficiency in data centers?
A Data Center can consist of a large group of networked servers and associated power distribution, networking, and cooling equipment. All these applications consume enormous amounts of energy which result in a significant increase in energy inefficiency problems. One of the causes of Data Center energy inefficiency power distribution is from the uninterruptible power supply (UPS). The UPS system is an alternate or backup source of power linking between mains power supply and end critical loads in order to provide back-up power and protection for the sensitive load. This study attempts to answer the question of how can future UPS topology and technology improve the efficiency of Data Center. In order to analyze the impact of different UPS technologies and their operating efficiencies, a model for a medium size Data Centre is developed, and load schedules and worked schematics were created to analyze and test the components of each of the UPS system topologies.
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