ANANYO BHATTACHARYA
National Institute of Technology Jamshedpur, Indian Institute of Technology
About
Dr. Ananyo Bhattacharya has completed his B.Tech. Degree in Electrical Engineering from West Bengal University of Technology (WBUT) and M. Tech. Degree in Electrical Engineering from University of Calcutta, West Bengal, India in 2010 and 2012 respectively. He has completed his Ph.D. from the Department of Electrical Engineering, IIT (ISM) Dhanbad in 2017. Currently He is working as an Assistant Professor, Department of Electrical Engg., National Institute of Technology, Jamshedpur. He has submitted two patent application, has published several journal and conference publications in national and international level. He has published six book chapters and has guided UG, PG and Ph.D. students. His research interests include power electronics, applications of resonant converter, induction heating and renewable energy systems.
Employment
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National Institute of Technology Jamshedpur ASSISTANT PROFESSOR2018 - Present
Education
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Indian Institute of Technology Ph.D2012 - 2016
Projects & Funding
Projects & funding information is unavailable.
Publications (21)
- Design and validation of a DC–DC converter-based inductive power transfer system with increased efficiency and reduced voltage stress across switches Save
- Design and analysis of a single-stage three-leg resonant converter with PFM-ADC control Save
- Class-E type Inverter-based Wireless Power Transfer System for different numbers of coils - A Comparative analysis and validation using Typhoon HIL Save
- Dual Output and Dual-Frequency Resonant Inverter-based Induction Heating Using ADC Control Save
- Wireless Chargers for Electric Vehicles, Distributed Energy Resources and Electric Vehicle: Analysis and Optimisation of Network Operations (1st ed.) Save
- Analysis and Design of Single-Phase Z-Source Inverter with Different PWM Techniques for Standalone PV System Save
- Performance of a Modified Impedance Source Inverter in Solar Power System Save
- A class DE parallel voltage source inverter based inductive power transfer system with improved efficiency and reduced voltage stress across switches Save
- Design and simulation of active PFC using boost converter used in Marx’s generator Save
- Dual output direct AC–AC series resonant converter for all metal induction heating system with a hybrid control technique Save