Evaluation of 1.2 kV SiC MOSFETs in multilevel cascaded H-bridge three-phase inverter for medium-voltage grid applications

被引:11
|
作者
Mhiesan H. [1 ]
Umuhoza J. [2 ]
Mordi K. [3 ]
Farnell C. [1 ]
Mantooth H.A. [1 ]
机构
[1] Department of Electrical Engineering, University of Arkansas, Fayetteville, AR
[2] Failure Analysis Engineer at Murata Power Solutions, Greater Boston, MA
[3] Electrical Design Engineer at Benchmark Group Inc., Rogers, AR
来源
关键词
Cascaded h-bridge inverter; Energy storage; Medium voltage AC grid; SiC switching devices;
D O I
10.23919/CJEE.2019.000007
中图分类号
学科分类号
摘要
A study is conducted to evaluate 1.2 kV silicon-carbide (SiC) MOSFETs in a cascaded H-bridge (CHB) three-phase inverter for medium-voltage applications. The main purpose of this topology is to remove the need for a bulky 60 Hz transformer normally used to step up the output signal of a voltage source inverter to a medium-voltage level. Using SiC devices (1.2-6.5 kV SiC MOSFETs) which have a high breakdown voltage, enables the system to meet and withstand the medium-voltage stress using only a minimal number of cascaded modules. The SiC-based power electronics when used in the presented topology considerably reduce the complexity usually encountered when Si devices are used to meet the medium-voltage level and power scalability. Simulation and preliminary experimental results on a low-voltage prototype verifies the nine-level CHB topology presented in this study. © 2019 IEEE. All rights reserved.
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页码:1 / 13
页数:12
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