DocumentCode :
1358477
Title :
Modeling and DBC-PSC-PWM Control of a Three-Phase Flying-Capacitor Stacked Multilevel Voltage Source Inverter
Author :
Ben Smida, Moncef ; Ben Ammar, Faouzi
Author_Institution :
Inst. Nat. des Sci. Appl. et de Technol., Tunis, Tunisia
Volume :
57
Issue :
7
fYear :
2010
fDate :
7/1/2010 12:00:00 AM
Firstpage :
2231
Lastpage :
2239
Abstract :
In this paper, the authors propose a mathematical model for a new topology called "stacked multicell converter" (SMC). Each phase of the SMC n × m multilevel inverter is formed by a stack of m flying-capacitor multilevel inverters, and each stack or stage is realized by connecting in series n controllable commutation cells. An original multicarrier subharmonic pulsewidth modulation (PWM), called disposition band carrier and phase-shifted carrier PWM (DBC-PSC-PWM), method is developed to produce (n × m + 1) output voltage levels and to improve the output voltage harmonic spectrum with a wide output frequency range. A diagram state machine is then used to decode the DBC-PSC-PWM modulator and distribute the commutations evenly to each inverter cell in a cyclical fashion. To carry out, in practice, the SMC n × m modulation technique, the implementation of the modulation control strategy has been done in a field-programmable gate array circuit XC4010E+ of XILINX to control a three-phase SMC 3 × 2 seven-level inverter, and the experimental results are carried out to confirm the high performance of this inverter.
Keywords :
PWM invertors; field programmable gate arrays; power capacitors; power control; DBC-PSC-PWM control; disposition band carrier and phase-shifted carrier PWM; field-programmable gate array circuit; multicarrier subharmonic pulsewidth modulation; stacked multilevel voltage source inverter; three-phase flying-capacitor; Multicarrier modulation; multilevel inverter; stacked multicell converter (SMC) $n times m$; state machine;
fLanguage :
English
Journal_Title :
Industrial Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0046
Type :
jour
DOI :
10.1109/TIE.2009.2030764
Filename :
5226560
Link To Document :
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