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Hot-Swapping Analysis and Implementation of Series-Stacked Server Power Delivery Architectures

机译:串联堆叠服务器电源传输体系结构的热交换分析和实现

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Current data center power delivery architectures consist of many cascaded power conversion stages, where the system-level power conversion efficiency is reduced each time the power is processed through the individual stages. Recently, series-stacked power delivery architectures have shown how the overall power conversion can be reduced through architectural changes, reporting above 99% system-level power conversion efficiencies for data centers. In this paper, we contribute to the development of the series-stacked power delivery architectures by addressing the important hot-swapping challenge, without sacrificing the high power conversion efficiency. We analyze the hot-swapped operation of the series-stacked architecture, and experimentally validate it on a testbed that includes four series-connected 12 V, 120 W servers and four custom-designed differential converters with associated circuitry for hot-swapping. The results show that continuous operation of the series-stacked servers can be maintained while a server is hot-swapped without a significant reduction in the high power conversion efficiency.
机译:当前的数据中心供电架构由许多级联的功率转换级组成,其中每次通过各个级处理功率时,系统级功率转换效率都会降低。最近,串联堆叠的供电架构显示了如何通过架构更改来降低整体功率转换,报告数据中心的系统级功率转换效率超过99%。在本文中,我们通过解决重要的热插拔挑战,同时又不牺牲高功率转换效率,为串联堆叠式供电架构的发展做出了贡献。我们分析了串联堆叠架构的热插拔操作,并在一个测试台上进行了实验验证,该测试台包括四个串联的12 V,120 W服务器和四个定制设计的差分转换器,以及用于热插拔的相关电路。结果表明,当服务器热插拔时,可以保持串联堆叠式服务器的连续运行,而不会显着降低高功率转换效率。

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