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Towards a 99% Efficient Three-Phase Buck-Type PFC Rectifier for 400-V DC Distribution Systems

机译:面向适用于400V直流配电系统的高效99%三相降压型PFC整流器

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摘要

In telecom applications, the vision for a total power conversion efficiency from the mains to the output of point-of-load (PoL) converters of 95% demands optimization of every conversion step, i.e., the power factor correction (PFC) rectifier front-end should show an outstanding efficiency in the range of 99%. For recently discussed 400-V dc distribution bus voltages, a buck-type PFC rectifier is a logical solution. In this paper, an efficiency-optimized, 98.8% efficient, 5-kW three-phase buck-type PFC rectifier with 400-V output is presented. Methods for calculating losses of all components are described and are used to optimize the converter design for efficiency at full load. Special attention is paid to semiconductor losses, which are shown to be dominant, with the parasitic device capacitance losses being a significant component. The calculation of these parasitic capacitance losses is treated in detail, and the charge-balance approach used is verified. A prototype of the proposed rectifier is constructed which verifies the accuracy of the models used for loss calculation and optimization.
机译:在电信应用中,要想实现从电源到负载点(PoL)转换器输出的总功率转换效率达到95%,就需要对每个转换步骤进行优化,即功率因数校正(PFC)整流器的前端终端应显示出99%范围内的出色效率。对于最近讨论的400 V直流配电总线电压,降压型PFC整流器是一种合理的解决方案。本文提出了一种效率优化,效率为98.8%,输出功率为400V的5kW三相降压型PFC整流器。描述了计算所有组件损耗的方法,这些方法用于优化转换器设计以提高满载效率。特别要注意的是半导体损耗,该损耗被证明是主要的,而寄生器件的电容损耗是重要的组成部分。详细讨论了这些寄生电容损耗的计算,并验证了所用的电荷平衡方法。构建了所提出的整流器的原型,该原型验证了用于损耗计算和优化的模型的准确性。

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