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Optimal Sizing on a Mission Profile of Isolated NPC DC-DC Converters using 3.3 kV SiC MOSFETs for Power Electronic Traction Transformers

机译:用于隔离NPC DC-DC转换器的任务配置文件的最佳尺寸使用3.3 kV SiC MOSFET用于电力电子牵引变压器

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Multilevel converters, known as power electronic traction converters (PETT), are foreseen to replace bulky traditional on-board low frequency transformers (LFT) and two-level rectifiers in railway rolling stock. In addition to volume and weight reduction, a gain in the efficiency can be expected. This paper focuses on the isolated DC/DC conversion stage within the PETT, realised by a resonant converter, with 3-level NPC half-bridge primary and 2-level full-bridge secondary. Design is optimised both at nominal power and on a typical mission profile for a regional application. The comparison is carried out for 15 kV/16.7 Hz infrastructure and 2 MW PETTs using 3.3 kV SiC MOSFETs and nanocrystalline core transformers. The best MFT designs are achieved at 4 kHz when optimised on a mission profile and at 6 kHz when sized at rated power. A reduction of 13 % of the total energy loss on a typical journey can be obtained by optimising the design of the DC/DC converter on a mission profile rather than at nominal power.
机译:多级转换器,称为电力电子牵引转换器(PETT),以预见到庞大的传统车载低频变压器(LFT)和铁路滚动库存中的两级整流器。除了体积和减轻体积,可以预期效率的增益。本文侧重于PETT内的隔离直流/直流转换阶段,由谐振转换器实现,具有3级NPC半桥初级和2级全桥二级。设计是以标称电源和典型的任务配置文件进行优化的,以获得区域应用程序。使用3.3 kV SiC MOSFET和纳米晶核心变压器进行15 kV / 16.7 Hz基础设施和2 MW PETT的比较。当在任务配置文件和6 kHz处优化时,在4 kHz时,最佳的MFT设计在额定功率时优化。通过优化任务配置文件的DC / DC转换器的设计而不是标称动力,可以降低典型行程的总能量损失的13%。

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