Wireless sensor network for data-center environmental monitoring

Michael G. Rodriguez, Luis E. Ortiz Uriarte, Yi Jia, Kazutomo Yoshii, R. Ross, P. Beckman
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引用次数: 62

Abstract

Data centers' energy consumption has attracted global attention because of the fast growth of the information technology (IT) industry. Up to 60% of the energy consumed in a data center is used for cooling in wasteful ways as a result of lack of environmental information and overcompensated cooling systems. In this project, a wireless sensor network for data-enter environmental monitoring was developed to improve energy efficiency and to optimize data-center performance. The sensor network consists of a suite of sensor nodes for data sensing, a router node to relay sensed data, and a coordinator node to establish a network, receive the data, and process the data. The prototype sensor network was built on Arduino open source hardware with a seamlessly integrated XBee RF module and configured to operate within the ZigBee mesh network standard. A 24-hour test run at Argonne's data center demonstrated that the wireless networked environmental monitoring solution is easy to integrate and manage with the existing IT infrastructure, while delivering better visibility into the data center's 3D temperature and humidity distribution and substantial improvements in energy efficiency.
用于数据中心环境监测的无线传感器网络
随着信息技术(IT)产业的快速发展,数据中心的能耗问题引起了全球的广泛关注。由于缺乏环境信息和过度补偿的冷却系统,数据中心高达60%的能源消耗被浪费在冷却上。在这个项目中,开发了一个用于数据中心环境监测的无线传感器网络,以提高能源效率并优化数据中心的性能。传感器网络由一组用于数据感知的传感器节点、一个用于中继感知数据的路由器节点和一个用于建立网络、接收数据和处理数据的协调节点组成。原型传感器网络建立在Arduino开源硬件上,具有无缝集成的XBee RF模块,并配置为在ZigBee网状网络标准下运行。在Argonne数据中心进行的24小时测试表明,无线网络环境监测解决方案易于与现有IT基础设施集成和管理,同时可以更好地了解数据中心的3D温度和湿度分布,并大幅提高能源效率。
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