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Sensor Communication Model Using Cyber-Physical System Approach for Green Data Center

机译:传感器通信模型采用绿色数据中心的网络物理系统方法

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Energy consumption in distributed computing system gains a lot of attention recently after its processing capacity becomes significant for better business and economic operations. Comprehensive analysis of energy efficiency in high-performance data center for distributed processing requires ability to monitor a proportion of resource utilization versus energy consumption. In order to gain green data center while sustaining computational performance, a model of energy efficient cyber-physical communication is proposed. A real-time sensor communication is used to monitor heat emitted by processors and room temperature. Specifically, our cyber-physical communication model dynamically identifies processing states in data center while implying a suitable air-conditioning temperature level. The information is then used by administration to fine-tune the room temperature according to the current processing activities. Our automated triggering approach aims to improve edge computing performance with cost-effective energy consumption. Simulation experiments show that our cyber-physical communication achieves better energy consumption and resource utilization compared with other cooling model.
机译:分布式计算系统中的能耗最近在其加工能力变得越来越大,以便更好的商业和经济运营。分布式处理高性能数据中心的能效综合分析需要监控资源利用比例与能量消耗的能力。为了获得绿色数据中心,同时持续计算性能,提出了一种节能网络物理通信模型。实时传感器通信用于监测处理器和室温发出的热量。具体而言,我们的网络物理通信模型动态地识别数据中心中的处理状态,同时暗示适当的空调温度水平。然后通过给药来使用根据当前加工活动来微调室温的信息。我们的自动触发方法旨在通过具有成本效益的能耗来提高边缘计算性能。仿真实验表明,与其他冷却模型相比,我们的网络物理通信实现了更好的能耗和资源利用。

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