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Thermal-aware relocation of servers in green data centers

机译:绿色数据中心中服务器的热感知迁移

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摘要

Rise in inlet air temperature increases the corresponding outlet air temperature from the server. As an added effect of rise in inlet air temperature, some active servers may start exhaling intensely hot air to form a hotspot. Increase in hot air temperature and occasional hotspots are an added burden on the cooling mechanism and result in energy wastage in data centers. The increase in inlet air temperature may also result in failure of server hardware. Identifying and comparing the thermal sensitivity to inlet air temperature for various servers helps in the thermal-aware arrangement and location switching of servers to minimize the cooling energy wastage. The peak outlet temperature among the relocated servers can be lowered and even be homogenized to reduce the cooling load and chances of hotspots. Based upon mutual comparison of inlet temperature sensitivity of heterogeneous servers, this paper presents a proactive approach for thermal-aware relocation of data center servers. The experimental results show that each relocation operation has a cooling energy saving of as much as 2.1 kW·h and lowers the chances of hotspots by over 77%. Thus, the thermal-aware relocation of servers helps in the establishment of green data centers.
机译:进气温度升高会增加服务器相应的排气温度。作为进气温度升高的附加影响,一些活动服务器可能开始呼出强烈的热空气以形成热点。热空气温度的升高和偶尔出现的热点增加了冷却机制的负担,并导致数据中心的能源浪费。进气温度的升高也可能导致服务器硬件出现故障。识别并比较各种服务器对进气温度的热敏感性有助于服务器的热感知布置和位置切换,从而最大程度地减少了冷却能量的浪费。可以降低搬迁服务器之间的最高出口温度,甚至可以使其均匀化,以减少冷却负荷和出现热点的机会。在相互比较异构服务器入口温度敏感性的基础上,本文提出了一种主动感知的数据中心服务器热定位方法。实验结果表明,每次搬迁操作均可以节省2.1 kW·h的冷却能源,并减少了77%以上的热点机会。因此,服务器的热感知重定位有助于建立绿色数据中心。

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