Shuvra Prokash Biswas
Orcid: 0000-0002-8010-8948
According to our database1,
Shuvra Prokash Biswas
authored at least 16 papers
between 2020 and 2024.
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Bibliography
2024
A Capacitor Voltage Balancing Hybrid PWM Technique to Improve the Performance of T-Type NPC Inverters.
IEEE Access, 2024
2023
A Modified PWM Strategy With an Improved ANN Based MPPT Algorithm for Solar PV Fed NPC Inverter Driven Induction Motor Drives.
IEEE Access, 2023
A Five-Level Switched-Capacitor Based Transformerless Inverter With Boosting Capability for Grid-Tied PV Applications.
IEEE Access, 2023
IEEE Access, 2023
2022
An Advanced Nonlinear Controller for the LCL-Type Three-Phase Grid-Connected Solar Photovoltaic System With a DC-DC Converter.
IEEE Syst. J., 2022
Design of a High Performance Resonant Controller for Improved Stability and Robustness of Islanded Three-Phase Microgrids.
IEEE Access, 2022
2021
Proceedings of the IEEE Industry Applications Society Annual Meeting, 2021
H9 and H10 Transformer-less Solar Photovoltaic Inverters for Leakage Current Suppression and Harmonic Current Reduction.
Proceedings of the IEEE Industry Applications Society Annual Meeting, 2021
Proceedings of the IEEE Industry Applications Society Annual Meeting, 2021
A Modified PWM Scheme to Improve the Power Quality of NPC Inverter Based Solar PV Fed Induction Motor Drive for Water Pumping.
Proceedings of the IEEE Industry Applications Society Annual Meeting, 2021
A New H7 Transformer-less Single-Phase Inverter to Improve the Performance of Grid-Connected Solar Photovoltaic Systems.
Proceedings of the IEEE Industry Applications Society Annual Meeting, 2021
A New Level Shifted Carrier Based PWM Technique for a 5-Level Multilevel Inverter Used in Induction Motor Drives.
Proceedings of the IEEE Industry Applications Society Annual Meeting, 2021
2020
IEEE Access, 2020
Compact Three Phase Multilevel Inverter for Low and Medium Power Photovoltaic Systems.
IEEE Access, 2020
A Second Order High Performance Resonant Controller for a Three-Phase Islanded Microgrid.
Proceedings of the IEEE Industry Applications Society Annual Meeting, 2020
A New Hybrid Multilevel Inverter Topology with Level Shifted Multi-carrier PWM Technique for Harvesting Renewable Energy.
Proceedings of the IEEE Industry Applications Society Annual Meeting, 2020