飞机混合动力推进系统中兆瓦级中压高效率高功率密度功率变换器的研制

Di Zhang, Jiangbiao He, D. Pan, M. Dame, M. Schutten
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引用次数: 18

摘要

混合动力推进系统是一项使飞机更省油、更安静、更低碳排放的技术。本文研制了一种基于混合三电平有源中性点箝位(3L-ANPC)拓扑结构的兆瓦级功率变换器。为了实现高效率,3L-ANPC变换器的载波频率开关器件采用新型的碳化硅(SiC)金属氧化物半导体场效应晶体管(mosfet),而基频输出开关选用传统的硅(Si)绝缘栅双极晶体管(igbt)。直流母线电压从传统的270v增加到2.4 kV,以减少飞机中电力电缆的重量。与传统的400hz飞机电气系统不同,这里变频器的额定基频输出频率被提升到1.4 kHz,以驱动高速电机。本文介绍了3L-ANPC逆变器的系统硬件开发和新的PWM策略,并给出了相关的实验结果来验证该mw级中压逆变器的性能。结果表明,1 mw功率逆变器的效率达到99%,功率密度达到12 kVA/kg,为实现高效高密度的飞机混合推进系统提供了一种很有前景的解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of Megawatt-Scale Medium-Voltage High Efficiency High Power Density Power Converters for Aircraft Hybrid-Electric Propulsion Systems
Hybrid-electric propulsion system is an enabling technology to make the aircrafts more fuel-saving, quieter, and lower carbide emission. In this paper, a megawatt-scale power converter based on a hybrid three-level active neutral-point-clamped (3L-ANPC) topology is developed. To achieve high efficiency, the switching devices operated at carrier frequency in the 3L-ANPC converter are configured by the emerging Silicon Carbide (SiC) Metal-Oxide Semiconductor Field-Effect Transistors (MOSFETs), while the conventional Silicon (Si) Insulated-Gate Bipolar Transistors (IGBTs) are selected for the switches modulated at the fundamental output frequency. The dc-bus voltage is increased from the conventional 270 V to 2.4 kV to reduce the power cable weight in the aircraft. Unlike the traditional 400 Hz aircraft electric systems, the rated fundamental output frequency of the inverter here is boosted to 1.4 kHz to drive the high-speed motor. Systematic hardware development and new PWM strategy for the 3L-ANPC inverter will be presented in this paper, and the associated experimental results are shown to verify the performance of this MW-scale medium-voltage inverter. It is shown that the 1-MW power inverter achieves an efficiency of99% and power density of 12 kVA/kg, which provides a promising solution to the realization of high-efficiency high-density aircraft hybrid propulsion systems.
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