REFERENCES

1. Rodriguez J, Jih-sheng Lai, Fang Zheng Peng. Multilevel inverters: a survey of topologies, controls, and applications. IEEE Trans Ind Electron 2002;49:724-38.

2. Yang Y, Wen H, Fan M, Xie M, Chen R. Fast finite-switching-state model predictive control method without weighting factors for T-Type three-level three-phase inverters. IEEE Trans Ind Inf 2019;15:1298-310.

3. Altin N, Ozdemir S. Three-phase three-level grid interactive inverter with fuzzy logic based maximum power point tracking controller. Energy Conversion and Management 2013;69:17-26.

4. Laamiri S, Ghanes M, Santomenna G. Observer based direct control strategy for a multi-level three phase flying-capacitor inverter. Control Engineering Practice 2019;86:155-65.

5. Bhatnagar J, Dave V. A comparative study of different topologies of multilevel inverters. International Journal of Electrical and Electronics Engineers 2017;9:2050-6.

6. Hatas H, Genc N, Mamizadeh A.

7. Guler N, Irmak E. Design and control of multi - input multi - output DC-DC converter for neutral point clamped inverters. Gazi University Journal of Science Part C 2019;7:49-62.

8. Malinowski M, Gopakumar K, Rodriguez J, Pérez MA. A survey on cascaded multilevel inverters. IEEE Trans Ind Electron 2010;57:2197-206.

9. Kumar R, Thangavelusamy D. A modified nearest level modulation scheme for a symmetric cascaded H-bridge inverter. Gazi Univ J Sci 2019;32:471-481.

10. Ozturk N, Canbaz R, Celik E.

11. Lin J, Weiss G.

12. Dargahi V, Khoshkbar Sadigh A, Abarzadeh M, Pahlavani MRA, Shoulaie A. Flying capacitors reduction in an improved double flying capacitor multicell converter controlled by a modified modulation method. IEEE Trans Power Electron 2012;27:3875-87.

13. Komurcugil H, Bayhan S, Guler N, Blaabjerg F. An effective model predictive control method with self-balanced capacitor voltages for single-phase three-level shunt active filters. IEEE Access 2021;9:103811-21.

14. Odeh C, Lewicki A, Morawiec M, Kondratenko D. Three-level F-Type inverter. IEEE Trans Power Electron 2021;36:11265-75.

15. Sefa I, Ozdemir S, Komurcugil H, Altin N. Comparative study on Lyapunov-function-based control schemes for single-phase grid-connected voltage-source inverter with LCL filter. IET Renewable Power Generation 2017;11:1473-82.

16. Bayhan S, Komurcugil H. Sliding-mode control strategy for three-phase three-level T-type rectifiers with DC capacitor voltage balancing. IEEE Access 2020;8:64555-64.

17. Komurcugil H, Bayhan S.

18. Komurcugil H, Guler N, Bayhan S.

19. Ismeil M A.

20. Bayhan S, Trabelsi M, Abu-rub H, Malinowski M. Finite-control-set model-predictive control for a quasi-Z-source four-leg inverter under unbalanced load condition. IEEE Trans Ind Electron 2017;64:2560-9.

21. Komurcugil H, Biricik S, Bayhan S, Zhang Z. Sliding mode control: overview of its applications in power converters. IEEE Ind Electron Mag 2021;15:40-9.

22. Bagheri F, Komurcugil H, Kukrer O, Guler N, Bayhan S. Multi-input multi-output-based sliding-mode controller for single-phase quasi-Z-source inverters. IEEE Trans Ind Electron 2020;67:6439-49.

23. Topal M, Iskender I, Genc N. Sensorless speed control of a BLDC motor using improved sliding mode observer technique. Int J Tech Phys Probl Eng 2019;11:1-9.

24. Guler N, Komurcugil H. Energy function based finite control set predictive control strategy for single-phase split source inverters. IEEE Trans Ind Electron 2021;0046:1.

Complex Engineering Systems
ISSN 2770-6249 (Online)

Portico

All published articles are preserved here permanently:

https://www.portico.org/publishers/oae/

Portico

All published articles are preserved here permanently:

https://www.portico.org/publishers/oae/