A Megawatt-Scale Si/SiC Hybrid Multilevel Inverter for Electric Aircraft Propulsion Applications

绝缘栅双极晶体管 逆变器 电气工程 拓扑(电路) 计算机科学 电压 电子工程 工程类
作者
Fei Diao,Xinyuan Du,Zhuxuan Ma,Yuheng Wu,Feng Guo,Yufei Li,Zhe Zhao,Yue Zhao
出处
期刊:IEEE Journal of Emerging and Selected Topics in Power Electronics [Institute of Electrical and Electronics Engineers]
卷期号:11 (4): 4095-4107 被引量:13
标识
DOI:10.1109/jestpe.2023.3266197
摘要

This article presents the design and development of a megawatt-scale medium-voltage (MV) hybrid inverter prototype to validate its feasibility and potentials for electric propulsion on the next-generation electric aircraft system with an onboard MV dc distribution, e.g., 3-kV dc bus in this work. The proposed hybrid converter consists of a three-level active-neutral-point-clamped (ANPC) stage using 3.3-kV silicon insulated-gate bipolar transistors (IGBTs) cascaded with an H-bridge stage using cost-effective 1.2-kV silicon carbide (SiC) MOSFETs in each phase. Comprehensive design and evaluation of the full-scale prototype are elaborated, including the low-inductance busbar design, converter architecture optimization, and system integration. In addition, a low computational cost space vector modulation with common-mode voltage (CMV) reduction feature is proposed to fully exploit the benefits of SiC MOSFET in this hybrid topology. Extensive simulation and experimental results are provided to demonstrate the performance of each power stage and the full converter assembly in both the steady-state operation and variable frequency operations. Compared with the widely adopted IGBT-based ANPC converter in MV applications, the proposed seven-level (7-L) hybrid inverter system features higher power efficiency, reduced harmonics, higher dc voltage utilization, reduced CMV, and lower dv / dt while remaining cost effective compared to the solution using MV SiC MOSFETs.
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