Dr. Subhadip Chakraborty
Indian Institute of Technology Delhi, Larsen and Toubro Limited - Construction Campus
About
Dr. Subhadip Chakraborty has been Prime Minister's Research Fellow in the Department of Electrical Engineering at IIT Delhi, under the joint mentorship of Prof. Bhim Singh and Prof. B.K. Panigrahi. He is currently working as a Senior Professional in Hitachi Energy since July 2025. He holds a B.Tech. in Electrical Engineering from Kalyani Government Engineering College (2020) and an M.Tech. in Construction Technology & Management (Electrical) from IIT Delhi (2022). He has earned his Ph.D. in Electrical Engineering from IIT Delhi in Power Electronics, Drives and Renewable Energy Driven Inverter Based Power Systems in 2025. His contributions are reflected in his research publications in top-tier IEEE Transactions and international/ national conferences. He serves as a reviewer for several international conferences (APEC, ECCE, IAS Annual Meeting, IECON, STPEC and many others) and reputed journals like IEEE Transactions on Smart Grid (TSG), IEEE Transactions on Industrial Informatics (TII), IEEE Transactions on Energy Conversion (TEC), IEEE Transactions on Power Electronics (TPEL), IEEE Transactions on Power Systems (TPWS), IEEE Transactions on Power Electronics (Letters), IEEE Journal of Emerging and Selected Topics in Power Electronics (JESTPE), Springer Nature Journals, Institution of Electronics and Telecommunication Engineers (IETE) Journal of Research – Taylor & Francis, Electric Power Systems Research (Elsevier), Sustainable Computing: Informatics and Systems (Elsevier), Computers and Electrical Engineering (Elsevier), and many others. He has received several prestigious awards, including the SERB ITS 2024, AMTGP 2024 by IEEE-IAS Society, CSIR Travel Grant Award 2023, and has been recognized as an NPTEL Discipline Star in Electrical Engineering by NPTEL in 2021. He has received national fellowships such as the prestigious Prime Minister's Research Fellowship (PMRF) in 2023 and the Build India XXIII Scholarship in 2020. Prior to his doctoral studies, he contributed to the construction of a 35 MW Solar PV plant with a 57 MWh Battery Energy Storage System at Larsen & Toubro. A member of IEEE and other professional organizations, Dr. Subhadip Chakraborty is passionate about advancing sustainable energy solutions through his expertise in renewable energy, power electronics, and control engineering. His main research interests include filter design, phase-locked loops (PLLs), frequency-locked loops (FLLs), linear modeling and analysis of power converters, power quality, sensor anomalies, harmonic compensation, solar and wind energy, doubly fed induction generators (DFIG), microgrid control, battery control, converter control, economic operation of microgrids, and mitigation techniques for grid-side power system issues.
Employment
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Indian Institute of Technology Delhi Prime Minister's Research Fellow2023 - 2025
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Larsen and Toubro Limited - Construction Campus Senior Engineer2022 - 2022
Education
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Indian Institute of Technology Delhi Ph.D.2023 - 2026
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Indian Institute of Technology Delhi M.Tech2020 - 2022
Projects & Funding
Projects & funding information is unavailable.
Publications (32)
- Operation and Control of BES-Wind Powered DFIG-Based Microgrid Synchronized to Grid Save
- Trip-Restrained Smooth Synchronization Control of a Wind Driven DFIG–SPV Array–BES Microgrid with Disturbance Immune Enhancements Save
- QHTGMc-E2PLL Aided Smooth Disturbance Free Synchronization of a Wind Turbine Driven DFIG-BES-SPVS Amidst Rapid Power Variability at PCC Save
- Improved FLL-Aided Dual-Mode Disturbance- Immune Seamless Synchronization for a Solar PV– Battery Storage System Amidst Grid Adversities Save
- Seamless Multimode Control and Operation of a DFIG-SPVA-BES-DG Based Hybrid Power Conversion System With Multiple Transition States Save
- An Improved Variable Step Normalized Adaptive Filter Based Control and Power Conditioning for a Remote Solar PV-DG Set System Save
- An IMFOGI Based Control for a SPVA-BES-SRDG Based Microgrid for Remote Dwelling Zones Save
- A Grid-Tied SPV Array and BES Based Microgrid Control for Reduced Amplitude-Phase-Frequency Loop Coupling Effects and Disturbance Crosstalks Save
- Peak Shaving and Duck Curve Mitigation With BES Based Ramp Rate Limit Strategy for Power Quality Enhancement of SPV-BES Microgrid Save
- Control for Disturbance Immune Operation of Synchronous Reluctance Diesel Generator Solar Photovoltaic System With Functional Enhancements Save