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An Advanced Power and Thermal Optimized High Density Rack Solution for Data Center Energy Efficiency

机译:先进的电源和散热优化的高密度机架解决方案,可提高数据中心的能源效率

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Higher computing capability, higher density and better energy efficiency have always been the goal of data centers. Cross different factors, IT equipment, specifically as server is playing the crucial role in a data center development. CPU/GPU and other hardware ingredients' computing capability keeps growth with innovated architecture and procedure upgrade, while comes along with increasing server power consumption as well as challenge for energy efficiency. Compared with conventional server system with dedicated fans and power supply units, design optimizations from rack level has been leading evolution to help data center to achieve those goals. This paper introduces an advanced rack scale power and thermal solution pilot deployed in Baidu new self-build data center. With the design, total rack power capacity is up to 36KW, which brings significant improvement for node density. Moreover,48V power distribution is implemented for better rack power efficiency, and centralized power shelf design with dual-input power source halves total PSU quantity for rack space saving and node density increase. Thermal solution is addressed from rack level as well, centralized fan wall provides air flow for whole rack, and thermosyphon heatsink is implemented in each node from higher heat dissipate efficiency perspective. With all the advanced technology integrated and optimized together, detailed energy efficiency contribution to Total Cost Ownership (TCO) is summarized and compared with conventional rack design and shows the advantages for data center energy efficiency.
机译:更高的计算能力,更高的密度和更好的能源效率一直是数据中心的目标。跨不同因素,IT设备(尤其是服务器)在数据中心开发中起着至关重要的作用。 CPU / GPU和其他硬件组件的计算能力通过创新的体系结构和过程升级来保持增长,同时伴随着服务器功耗的增加以及能源效率的挑战。与具有专用风扇和电源单元的传统服务器系统相比,机架级的设计优化一直在引领发展,以帮助数据中心实现这些目标。本文介绍了在百度新的自建数据中心中部署的高级机架规模电源和散热解决方案试点。通过该设计,机架的总功率容量高达36KW,这极大地提高了节点密度。此外,还实现了48V配电,以实现更好的机架电源效率,采用双输入电源的集中式电源架设计将PSU总量减少了一半,从而节省了机架空间并增加了节点密度。从机架级也解决了散热问题,集中式风扇墙为整个机架提供了气流,并且从更高的散热效率角度来看,在每个节点中都安装了热虹吸散热器。通过将所有先进技术集成和优化在一起,总结了详细的能效对总成本拥有(TCO)的贡献,并将其与传统机架设计进行了比较,并显示了数据中心能效的优势。

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