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1. Predictive Control of a Back-to-Back NPC Converter-Based Wind Power System.

2. Use of Stored Energy in PMSG Rotor Inertia for Low-Voltage Ride-Through in Back-to-Back NPC Converter-Based Wind Power Systems.

3. A Bidirectional Multilevel Boost–Buck DC–DC Converter.

4. Pulsewidth Modulations for the Comprehensive Capacitor Voltage Balance of n-Level Two-Leg Diode-Clamped Converters.

5. Control Strategies Based on Symmetrical Components for Grid-Connected Converters Under Voltage Dips.

6. Pulsewidth Modulations for the Comprehensive Capacitor Voltage Balance of n-Level Three-Leg Diode-Clamped Converters.

7. Voltage Balancing Control of Diode-Clamped Multilevel Converters With Passive Front-Ends.

8. Interfacing Renewable Energy Sources to the Utility Grid Using a Three-Level Inverter.

9. Fast Reliability Assessment of Neutral-Point-Clamped Topologies Through Markov Models.

10. Multibattery-Fed Neutral-Point-Clamped DC–AC Converter With SoC Balancing Control to Maximize Capacity Utilization.

12. Predictive Control for Low-Voltage Ride-Through Enhancement of Three-Level-Boost and NPC-Converter-Based PMSG Wind Turbine.

13. Overview of Control Systems for the Operation of DFIGs in Wind Energy Applications.

14. Multilevel Direct Power Control—A Generalized Approach for Grid-Tied Multilevel Converter Applications.

15. Analysis of the Fault-Tolerance Capacity of the Multilevel Active-Clamped Converter.

16. Multilevel Diode-Clamped Converter for Photovoltaic Generators With Independent Voltage Control of Each Solar Array.

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