Comparative evaluation of three-phase isolated matrix-type PFC rectifier concepts for high efficiency 380VDC supplies of future telco and data centers

P. Cortes, D. Bortis, Riccardo Pittini, J. Kolar
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引用次数: 15

Abstract

Due to the high energy consumption in data and telco centers, the use of 380V or 400V DC facility-level distribution has been proposed as an alternative to the conventional AC distribution for a more efficient power delivery structure. The DC voltage is powered from the three-phase mains by a PFC rectifier and in many cases a mains transformer is used to provide galvanic isolation. In order to achieve a high efficiency in the DC voltage generation and to implement the required isolation, a single-stage concept, such as a matrix-type rectifier that enables PFC functionality and galvanic isolation in a single conversion, can be beneficial. In addition, due to the fact that with the matrix-type rectifier the galvanic isolation is performed with a high-frequency transformer, this results in a more compact rectifier system compared to conventional systems where the mains-frequency isolation transformer is located at the input of the PFC rectifier. In this paper, an overview of isolated matrix-type PFC rectifier topologies is given and a new converter circuit is proposed, analyzed and comparatively evaluated against another promising PFC rectifier concept, the phase-modular IMY-rectifier.
面向未来电信和数据中心的高效380VDC电源的三相隔离矩阵型PFC整流器概念的比较评估
由于数据和电信中心的高能耗,已提出使用380V或400V直流设施级配电作为传统交流配电的替代方案,以获得更高效的电力输送结构。直流电压由PFC整流器从三相电源供电,在许多情况下,电源变压器用于提供电流隔离。为了在直流电压产生中实现高效率并实现所需的隔离,单级概念,例如在单次转换中实现PFC功能和电流隔离的矩阵型整流器,可能是有益的。此外,由于矩阵型整流器的电流隔离是用高频变压器进行的,这导致了一个更紧凑的整流器系统,与传统系统相比,主频隔离变压器位于PFC整流器的输入端。本文概述了隔离矩阵型PFC整流器拓扑结构,提出了一种新的变换器电路,并与另一种有前途的PFC整流器概念相模imy整流器进行了分析和比较评价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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