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A Series-Stacked Power Delivery Architecture With Isolated Differential Power Conversion for Data Centers

机译:具有用于数据中心的隔离式差分功率转换的串联堆叠式功率传输架构

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摘要

In this paper, an alternative method to achieve more efficient dc power distribution and voltage regulation for future data centers is presented. This paper describes a series-stacked power delivery architecture, where servers are connected electrically in series, thereby, providing inherent step down of voltage. Server voltage regulation is performed by differential power converters, which only process the mismatch power between servers. The bulk power flows with no power processing, yielding greatly increased system efficiency compared to conventional architectures. We demonstrate the series-connected architecture with an experimental proof of concept and compare the proposed architecture with a conventional dc power delivery architecture employing a best-in-class power supply unit for servers. The proposed power delivery architecture is validated with a series-stacked server rack consisting of four 12 V servers, powered from a 48 V dc bus, performing two different real-world operations: web traffic management and computation. Through experimental measurements, we demonstrate up to a 40x reduction in power conversion losses compared to state-of-the-art hardware, and an overall best-case system conversion efficiency of 99.89%.
机译:本文提出了另一种方法,可以为未来的数据中心实现更有效的直流功率分配和电压调节。本文介绍了一种串联堆叠的供电架构,其中服务器以电气方式串联连接,从而提供了固有的电压降低。服务器电压调节由差分电源转换器执行,该差分电源转换器仅处理服务器之间的不匹配电源。与常规体系结构相比,大功率电流无需进行功率处理,从而大大提高了系统效率。我们用实验性的概念证明来演示串联连接的体系结构,并将建议的体系结构与采用一流的服务器电源单元的常规直流电源传输体系结构进行比较。所建议的电源传输体系结构已通过串联堆叠的服务器机架进行了验证,该机架由四台12 V服务器组成,由48 V直流总线供电,执行两种不同的实际操作:网络流量管理和计算。通过实验测量,我们证明,与最先进的硬件相比,功率转换损耗最多降低了40倍,最佳系统总体转换效率为99.89%。

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