Analysis of multilevel inverter implementation topologies
https://doi.org/10.54596/2958-0048-2024-4-176-182
Abstract
The article presents a comparative analysis of multilevel inverter topologies, emphasizing the number of power components required for each configuration depending on the number of output voltage levels. The most popular topologies are considered, including the diode-clamped multilevel inverter, the flying capacitor inverter, the cascaded H-bridge inverter, and the level-shifted switch topology. It is shown that the level-shifted switch topology requires the minimum number of power components, which reduces implementation costs and makes the design more compact and economically efficient, especially for high voltage levels. The research results may be useful in selecting the optimal multilevel inverter configuration for power consumers that require high-quality output voltage.
About the Authors
S. S. MoldakhmetovKazakhstan
Сorresponding author, PhD, Associate Professor of the Department of Energetic and
radioelectronics
Petropavlovsk
О. S. Gagolina
Kazakhstan
M.Sc., senior lecturer of the Department of Energetic and radioelectronics
Petropavlovsk
E. Т. Doskuzhinov
Kazakhstan
Student
Petropavlovsk
References
1. Yasmeena, G. Tulasi Ram Das. Cascaded Multilevel Inverters: A Survey of Topologies, Controls, and Applications. International Journal of Scientific and Engineering Research. 2013. - № 4(8) - P. 353-367.
2. Bindeshwar Singh, Nupur Mittal, K.S. Verma, Deependra Singh, S. P. Singh, Rahul Dixit, Manvendra Singh, Aanchal Baranwal. Multi-level inverter: a literature survey on topologies and control strategies. International Journal of Reviews in Computing. - 2012. - №10. - P. 1-16.
3. Mamatha Sandhu, Tilak Thakur. Multilevel Inverters: Literature Survey - Topologies, Control Techniques and Applications of Renewable Energy Sources - Grid Integration. Journal of Engineering Research and Applications. - 2014. - 4(3). - P. 644-652
4. Isembergenov N.T., Moldahmetov S.S. Insepov D.G., Sposob realizacii mnogourovnevogo silovogo invertora na baze IGBT / Nauchnyj zhurnal «Vestnik Kazahstansko-Britanskogo tekhnicheskogo universheta» №4 (35), 2015. - S. 95-100.
5. Sayat Moldakhmetov, Nalik Issembergenov, Dauren Insepov and Seitzhan Orynbayev. Implementation of multilevel power inverter / ARPN Journal of Engineering and Applied Sciences. - 2016. - Vol. 11, №11. - P. 6886-6890.
6. Rosli Omar, Mohammed Rasheed, Marizan Sulaiman, Ahmed Al-Janad. A Study of a Three Phase Diode Clamped Multilevel Inverter Performance for Harmonics Reduction. MAGNT Research Report. - 2014. - 2 (4). - P. 62-71.
7. Maheshkumar N., Maheskumar V., Divya M. The new topology in Flying Capacitor Multilevel Inverter // 2013 International Conference on Computer Communication and Informatics, 2013. - P. 1-6.
8. Ebrahim Babaei, Somayeh Alilu and Sara Laali. A New General Topology for Cascaded Multilevel Inverters with Reduced Number of Components Based on Developed H-Bridge. IEEE Transactions on Industrial Electronics. - 2014. - 61(8). - P. 3932-3939.
9. Sayat Moldakhmetov, Nalik Issembergenov and Abdurazak Kasymov. Multilevel inverter based on level switch and H-bridge / ARPN Journal of Engineering and Applied Sciences, - 2015. - Vol. 10, №16. - P. 6884-6887.
Review
For citations:
Moldakhmetov S.S., Gagolina О.S., Doskuzhinov E.Т. Analysis of multilevel inverter implementation topologies. Vestnik of M. Kozybayev North Kazakhstan University. 2024;(4 (64)):176-182. (In Russ.) https://doi.org/10.54596/2958-0048-2024-4-176-182