DocumentCode
758616
Title
A cascade boost-switched-capacitor-converter - two level inverter with an optimized multilevel output waveform
Author
Axelrod, Boris ; Berkovich, Yefim ; Ioinovici, Adrian
Author_Institution
Holon Acad. Inst. of Technol., Israel
Volume
52
Issue
12
fYear
2005
Firstpage
2763
Lastpage
2770
Abstract
Two structures, a switched-capacitor (SC)-based boost converter and a two-level inverter, are connected in cascade. The dc multilevel voltage of the first stage becomes the input voltage of the classical inverter, resulting in a staircase waveform for the inverter output voltage. Such a multilevel waveform is close to a sinusoid; its harmonics content can be reduced by multiplying the stage number of the SC converter. The output low-pass filter, customary after a two-level inverter, becomes obsolete, resulting in a small size of the system, as the SC circuit can be miniaturized. Both stages are operated at a high switching frequency, resulting in a high-frequency inverter output, as required by some industrial applications. A Fourier analysis of the output waveform is performed. The design is optimized with reference to the nominal duty-cycle for obtaining the minimum total harmonic distortion. Simulations and experiments on two prototypes, one with a five-level output and one with a seven-level output, confirm the theoretical analysis.
Keywords
Fourier analysis; harmonic analysis; harmonic distortion; invertors; power convertors; switched capacitor networks; Fourier analysis; boost converter; harmonic distortion; low pass filter; multilevel output waveform inverter; switched capacitor circuit; two-level inverter; Circuits; Design optimization; Inverters; Low pass filters; Performance analysis; Power harmonic filters; Switching converters; Switching frequency; Total harmonic distortion; Voltage; Boost converter; multilevel output waveform inverter; small-signal analysis; switched capacitor (SC);
fLanguage
English
Journal_Title
Circuits and Systems I: Regular Papers, IEEE Transactions on
Publisher
ieee
ISSN
1549-8328
Type
jour
DOI
10.1109/TCSI.2005.852205
Filename
1556783
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