Selective harmonic elimination for quasi seven-level operation of cascaded-type multilevel converters with unequal DC sources
Author | Fakhry, M.G. |
Author | Massoud, Ahmed |
Author | Ahmed, S. |
Available date | 2022-03-23T06:57:34Z |
Publication Date | 2015 |
Publication Name | 2015 1st Workshop on Smart Grid and Renewable Energy, SGRE 2015 |
Resource | Scopus |
Identifier | http://dx.doi.org/10.1109/SGRE.2015.7208734 |
Abstract | Generally, selective harmonic elimination (SHE) complexity for multilevel converters increases with the increase in number of levels. In this paper, an approach for multilevel converters' SHE is introduced. This approach is based on cancelling the 5th and 7th order harmonics irrelevant of the number of levels in three-phase cascaded-type multilevel converters with unequal DC sources, such that the solution for the angles required for the proposed SHE mimics that of the seven-level inverter SHE elimination (i.e. quasi seven-level operation of an m-level converter). The advantages of the proposed quasi seven-level SHE (Q7L-SHE) approach are the simplicity in format and independency of number of levels. The proposed approach can be extended for more of low order harmonic cancellation. Compared with the existing methods, the proposed method can be easily applied for a large number of switching angles, since it does not contain complex equations. A 17-level cascaded-type inverter with the unequal DC sources is considered as an example to validate the proposed concept. Simulation results using MATLAB/SIMULINK platform have been presented to elucidate the proposed concept. |
Sponsor | Qatar National Research Fund |
Language | en |
Publisher | Institute of Electrical and Electronics Engineers Inc. |
Subject | Electric inverters Electric power transmission networks Harmonic analysis MATLAB Smart power grids Cascaded-type inverter Complex equations Level converter Low order harmonics MATLAB /simulink Multilevel converter Selective harmonic elimination Switching angles Power converters |
Type | Conference Paper |
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Electrical Engineering [2649 items ]