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Thermal management in rack scale architecture system with shared power and shared cooling

机译:具有共享电源和共享散热的机架规模架构系统中的热管理

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In today's data center, in order to achieve higher density and better energy efficiency, the traditional server systems with dedicated fans and power supply units are evolving to the Rack Scale System with shared cooling and shared power supply at rack level, some examples are Open Compute Project and China Scorpio Rack. This evolution brings the challenges of how to efficiently control the rack cooling and effectively manage the rack power at coarse granularity level, e.g. at the whole rack or half rack level, while no increasing in system cost and management complexity. In this paper, the management architecture for the Rack Scale System is introduced, the cooling zone, power zone, and the parameters for thermal and power management are elaborated. Some new virtual sensors for thermal management are also introduced in this paper, the modeling method for the volumetric airflow virtual sensor is described, and the validation test results are presented. With the rack thermal and power management, the IT devices can be closely associated with the datacenter facilities, and thus be intelligently orchestrated and adapted to the workload for TCO (Total Cost of Ownership) saving and reliability improvement.
机译:在当今的数据中心中,为了实现更高的密度和更高的能源效率,具有专用风扇和电源单元的传统服务器系统正在发展为在机架级共享冷却和共享电源的机架规模系统,例如Open Compute项目和中国天蝎座。这种发展带来了挑战,即如何有效地控制机架冷却并有效地管理粗粒度级别的机架功率,例如:整个机架或半机架级别,而不会增加系统成本和管理复杂性。本文介绍了机架秤系统的管理体系结构,详细介绍了冷却区,电源区以及热量和电源管理的参数。本文还介绍了一些新的用于热管理的虚拟传感器,描述了体积流量虚拟传感器的建模方法,并给出了验证测试结果。通过机架热和电源管理,IT设备可以与数据中心设施紧密关联,从而可以智能地编排和调整IT设备,以适应TCO(总拥有成本)节省和可靠性提高的工作量。

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