Arup Ratan Paul
BITS Pilani, Hyderabad Campus, GE Aerospace, Indian Institute of Technology Bombay, Indian Institute of Engineering Science and Technology, Jaguar Land Rover TBSI
About
Arup Ratan Paul (Member, IEEE) was born at Kalyani, WB, India in 1993. He received B.E. degree in electrical engineering from Indian Institute of Technology, Shibpur (erstwhile Bengal Engineering and Science University, Shibpur), Howrah, India in 2015. He completed M.Tech. and Ph.D. dual degree in power electronics at Indian Institute of Technology Bombay, Mumbai, India in 2024.
He was an Engineer at Haldia Petrochemicals Ltd., Haldia, India, from 2015 to 2017. He served Jaguar Land Rover TBSI as a Power Electronics Hardware & Modelling Engineer from August 2023 to June 2025 and GE Aerospace as a Research Engineer: Power Electronics and Control from June 2025 to December 2025, both in Bengaluru, India. Currently, he is an Assistant Professor at BITS Pilani, Hyderabad Campus. His research interests include solar PV inverters, dc-dc converters, high gain inverters, application of power electronics in solar PV systems.
Employment
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BITS Pilani, Hyderabad Campus Assistant Professor2025 - Present
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GE Aerospace Research Engineer: Power Electronics2025 - 2025
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Jaguar Land Rover TBSI Power Electronics Modelling Engineer2023 - 2025
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Haldia Petrochemicals Limited Engineer2015 - 2017
Education
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Indian Institute of Technology Bombay M.Tech+PhD2017 - 2024
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Indian Institute of Engineering Science and Technology Bachelor of Engineering2011 - 2015
Projects & Funding
Projects & funding information is unavailable.
Publications (13)
- A Novel Battery-Integrated Transformer-Less Microinverter for Solar PV Applications Save
- A New Transformer-Less Common Ground Micro Inverter for Single-Phase Load Applications Save
- A New Single-Phase High Gain Microinverter for Photovoltaic Applications Save
- A Coupled Inductor Based Ćuk Microinverter for Single Phase Grid Connected PV Applications Save
- A Novel SEPIC-Ćuk-Based High Gain Solar PV Microinverter for Grid Integration Save
- A Novel Single Phase Grid Connected Transformer-Less Solar Micro-Inverter Topology With Power Decoupling Capability Save
- A Single-Phase Grid-Connected Boost/Buck-Boost-Derived Solar PV Micro-Inverter Topology Having Power Decoupling Capability Save
- Integration of Battery Energy Storage with a Transformer-less Solar PV Micro-inverter Save
- Boost/Buck-boost Based Grid Connected Solar PV Micro-inverter with Reduced Number of Switches and Having Power Decoupling Capability Save
- A Novel Single Phase Grid connected Transformer-less Solar Micro-inverter Topology with Power Decoupling Capability Save