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1. Novel 1-φ Dual Input Nine-Level Inverter Topology With Generalized Modulation Technique.

2. Topology, Modeling and Control Scheme for a new Seven-Level Inverter With Reduced DC-Link Voltage.

3. Improved Model Predictive Current Control for Three-Phase Three-Level Converters With Neutral-Point Voltage Ripple and Common Mode Voltage Reduction.

4. A Centralized Control Strategy for Grid-Connected High-Speed Switched Reluctance Motor Drive System With Power Factor Correction.

5. Modeling and Simulation of a Novel Active Three-Phase Multilevel Power Factor Correction Front End – The “Negev” Rectifier.

6. A Universal Blocking-Module-Based Average Value Model of Modular Multilevel Converters With Different Types of Submodules.

7. Combining Detailed Equivalent Model With Switching-Function-Based Average Value Model for Fast and Accurate Simulation of MMCs.

8. An Enhanced Model Predictive Control Using Virtual Space Vectors for Grid-Connected Three-Level Neutral-Point Clamped Inverters.

9. A New DC–DC Converter for Photovoltaic Systems: Coupled-Inductors Combined Cuk-SEPIC Converter.

10. Control Design for Photovoltaic Power Optimizers Using Bootstrap Circuit.

11. A Hybrid PWM-Based Field Weakening Strategy for a Hybrid-Inverter-Driven Open-Winding PMSM System.

12. Exploiting PV Inverters to Support Local Voltage—A Small-Signal Model.

13. New Flying-Capacitor-Based Multilevel Converter With Optimized Number of Switches and Capacitors for Renewable Energy Integration.