99.3% Efficient Three-Phase Buck-Type All-SiC SWISS Rectifier for DC Distribution Systems

被引:75
作者
Schrittwieser, Lukas [1 ]
Leibl, Michael [1 ,2 ]
Haider, Michael [1 ]
Thony, Friedrich [1 ,3 ]
Kolar, Johann W. [1 ]
Soeiro, Thiago Batista [4 ]
机构
[1] Swiss Fed Inst Technol, Power Elect Syst Lab, CH-8092 Zurich, Switzerland
[2] BRUSA Elekt AG, CH-9466 Sennwald, Switzerland
[3] Stadler Rail, CH-9565 Bussnang, Switzerland
[4] ABB Switzerland Ltd, Corp Res Ctr, CH-5405 Baden, Switzerland
关键词
AC-DC power converters; buck-type; power factor correction; rectifier; three-phase; PFC RECTIFIER;
D O I
10.1109/TPEL.2018.2817074
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
DC power distribution systems for data centers, industrial applications, and residential areas are expected to provide higher efficiency, higher reliability, and lower cost compared to ac systems and have been an important research topic in recent years. In these applications, an efficient power factor correction (PFC) rectifier, supplying the dc distribution bus from the conventional three-phase ac mains, is typically required. This paper analyzes the three-phase, buck-type, unity power factor SWISS Rectifier for the realization of an ultrahigh-efficiency PFC rectifier stage with a 400-V rms line-to-line ac input voltage and a 400-V dc output voltage. It is shown that the mains current total harmonic distortion of the rectifier can be improved significantly by interleaving two converter output stages. Furthermore, the dc output filter is implemented using a current-compensated integrated common-mode coupled inductor, which ensures equal current sharing between the interleaved half bridges and provides common-mode electromagnetic interference (EMI) filter inductance. Based on a theoretical analysis of the coupled inductor's magnetic properties, the necessary equations and the design procedure for selecting semiconductors, magnetic cores, the number of turns, and the EMI filter are discussed. Based on these results, an ultrahigh-efficient 8-kW 4-kW.dm(-3) (66-W.in(-3)) laboratory-scale prototype converter using 1.2-kV SiCMOSFETs is designed. Measurements taken on the prototype confirm a full power efficiency of 99.16% and a peak efficiency of 99.26%, as well as the compliance to CISPR 11 Class B conducted emission limits.
引用
收藏
页码:126 / 140
页数:15
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