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Cascaded Multilevel Inverter With Regeneration Capability and Reduced Number of Switches.

, , and . IEEE Trans. Industrial Electronics, 55 (3): 1059-1066 (2008)

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Hybrid Multicell Converter: Topology and Modulation., and . IEEE Trans. Industrial Electronics, 58 (9): 3938-3945 (2011)A simple modulation strategy for a Flying Capacitor converter using predictive control., , and . IECON, page 5020-5025. IEEE, (2016)Dual-Stage Control Strategy for a Flying Capacitor Converter Based on Model Predictive and Linear Controllers., , and . IEEE Trans. Ind. Informatics, 18 (4): 2203-2212 (2022)Phase-Disposition PWM Implementation for a Hybrid Multicell Converter., , and . IEEE Trans. Industrial Electronics, 60 (5): 1936-1942 (2013)Cascaded Multilevel Inverter With Regeneration Capability and Reduced Number of Switches., , and . IEEE Trans. Industrial Electronics, 55 (3): 1059-1066 (2008)Survey on Fault Operation on Multilevel Inverters., , , , , and . IEEE Trans. Industrial Electronics, 57 (7): 2207-2218 (2010)Switched Model Predictive Control for Improved Transient and Steady-State Performance., , and . IEEE Trans. Industrial Informatics, 11 (4): 968-977 (2015)Sequential Phase-Shifted Model Predictive Control for a Five-Level Flying Capacitor Converter., , , , , , and . ICIT, page 533-538. IEEE, (2019)Closed-loop SHE-PWM technique for power converters through Model Predictive Control., , , , , , and . IECON, page 5261-5266. IEEE, (2015)Implementation and Control of a Hybrid Multilevel Converter With Floating DC Links for Current Waveform Improvement., , , and . IEEE Trans. Industrial Electronics, 58 (6): 2304-2312 (2011)