Hextuple-inverter configuration for multilevel nine-phase symmetrical open-winding converter
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SANJEEVIKUMAR, Padmanaban, MAHAJAN, Sagar Bhaskar, MAROTI, Pandav Kiran, BLAABJERG, Frede, SIANO, Pierluigi, OLESCHUK, Valentin. Hextuple-inverter configuration for multilevel nine-phase symmetrical open-winding converter. In: IEEE International Conference on Power Electronics, Intelligent Control and Energy Systems: ICPEICES 2016, Ed. 1, 4-6 iulie 2016, Delhi. New Jersey, SUA: Institute of Electrical and Electronics Engineers Inc., 2017, Ediția 1, p. 0. ISBN 978-146738587-9. DOI: https://doi.org/10.1109/ICPEICES.2016.7853602
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IEEE International Conference on Power Electronics, Intelligent Control and Energy Systems
Ediția 1, 2017
Conferința "1st IEEE International Conference on Power Electronics, Intelligent Control and Energy Systems"
1, Delhi, India, 4-6 iulie 2016

Hextuple-inverter configuration for multilevel nine-phase symmetrical open-winding converter

DOI:https://doi.org/10.1109/ICPEICES.2016.7853602

Pag. 0-0

Sanjeevikumar Padmanaban1, Mahajan Sagar Bhaskar2, Maroti Pandav Kiran2, Blaabjerg Frede3, Siano Pierluigi4, Oleschuk Valentin5
 
1 Ohm Technologies, Chennai,
2 Marathwada Institute of Technology, Aurangabad,
3 Aalborg University,
4 University of Salerno,
5 Institute of Power Engineering of ASM
 
 
Disponibil în IBN: 15 februarie 2023


Rezumat

Hextuple-inverter configuration for multilevel nine-phase symmetrical open-winding DC converter is articulated in this work. Power modular unit consists of six classical three-phase voltage source inverters (VSI). Each VSI includes one bi-directional device (MOSFET/IGBT) per each phase and link to two capacitors for neutral connection. A modified single carrier five-level modulation (MSCFM) algorithm is developed and modulates each 2-level VSI as 5-level multilevel inverter (MLI). A set of test results is presented, which are observed from the model based developments in numerical simulation software's (Matlab/PLECS). The results always showed good conformity with the developed theoretical background under working conditions. The proposed converter found suited for (low-voltage/high current) electric vehicles, DC tractions and 'More-Electric Aircraft' applications.

Cuvinte-cheie
Hex-inverter, Multilevel Inverters, Multiphase Drives, Multiple Space Vectors, Nine-phase Inverter, pulse-width modulation, Symmetrical/Asymmetrical Inverter