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Towards Optimal Sensor Placement for Hot Server Detection in Data Centers

机译:寻求用于数据中心中热服务器检测的最佳传感器放置

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Recent studies have shown that a significant portion of the total energy consumption of many data centers is caused by the inefficient operation of their cooling systems. Without effective thermal monitoring with accurate location information, the cooling systems often use unnecessarily low temperature set points to over cool the entire room, resulting in excessive energy consumption. Sensor network technology has recently been adopted for data-center thermal monitoring because of its non-intrusive nature for the already complex data center facilities and robustness to instantaneous CPU or disk activities. However, existing solutions place sensors in a simplistic way without considering the thermal dynamics in data centers, resulting in unnecessarily degraded hot server detection probability. In this paper, we first formulate the problem of sensor placement for hot server detection in a data center as a constrained optimization problem. We then propose a novel placement scheme based on Computational Fluid Dynamics (CFD) to take various factors, such as cooling systems and server layout, as inputs to analyze the thermal conditions of the data center. Based on the CFD analysis in various server overheating scenarios, we apply data fusion and advanced optimization techniques to find a near-optimal sensor placement solution, such that the probability of detecting hot servers is significantly improved. Our empirical results in a real server room demonstrate the detection performance of our placement solution. Extensive simulation results also show that the proposed solution outperforms a commonly used placement solution in terms of detection probability.
机译:最近的研究表明,许多数据中心的总能耗中很大一部分是由其冷却系统的低效运行引起的。如果没有有效的热监测和准确的位置信息,冷却系统通常会使用不必要的低温设定点来对整个房间进行过度冷却,从而导致过多的能源消耗。传感器网络技术最近已被用于数据中心热监控,因为它对已经很复杂的数据中心设施具有非侵入性,并且对瞬时CPU或磁盘活动具有鲁棒性。但是,现有的解决方案以简单的方式放置传感器,而没有考虑数据中心中的热动力学,从而导致不必要地降低了热服务器的检测概率。在本文中,我们首先将数据中心中用于热服务器检测的传感器放置问题表述为约束优化问题。然后,我们提出了一种基于计算流体动力学(CFD)的新颖放置方案,以考虑各种因素(例如冷却系统和服务器布局)作为分析数据中心热状况的输入。基于各种服务器过热情况下的CFD分析,我们应用数据融合和先进的优化技术来找到接近最佳的传感器放置解决方案,从而显着提高了检测热服务器的可能性。我们在真实服务器机房中的经验结果证明了我们的放置解决方案的检测性能。大量的仿真结果还表明,在检测概率方面,所提出的解决方案优于常用的放置解决方案。

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